NARASIMHA NAIDU
Friday, 10 April 2015
HYBRID ELECTRICAL VECHICAL
Hybrid electric vehicle
From Wikipedia, the free encyclopedia
The Toyota Prius is the world's best selling hybrid car, with cumulative global sales of over 3 million units through June 2013.[1]
Modern HEVs make use of efficiency-improving technologies such as regenerative braking, which converts the vehicle's kinetic energy into electric energy to charge the battery, rather than wasting it as heat energy as conventional brakes do. Some varieties of HEVs use their internal combustion engine to generate electricity by spinning an electrical generator (this combination is known as a motor-generator), to either recharge their batteries or to directly power the electric drive motors. Many HEVs reduce idle emissions by shutting down the ICE at idle and restarting it when needed; this is known as a start-stop system. A hybrid-electric produces less emissions from its ICE than a comparably sized gasoline car, since an HEV's gasoline engine is usually smaller than a comparably sized pure gasoline-burning vehicle (natural gas and propane fuels produce lower emissions) and if not used to directly drive the car, can be geared to run at maximum efficiency, further improving fuel economy.
In 1901 Ferdinand Porsche developed the Lohner-Porsche Mixte Hybrid, the first gasoline-electric hybrid automobile in the world.[2] The hybrid-electric vehicle did not become widely available until the release of the Toyota Prius in Japan in 1997, followed by the Honda Insight in 1999.[3] While initially perceived as unnecessary due to the low cost of gasoline, worldwide increases in the price of petroleum caused many automakers to release hybrids in the late 2000s; they are now perceived as a core segment of the automotive market of the future.[4][5]
About 9 million hybrid electric vehicles have been sold worldwide by September 2014, led by Toyota Motor Company (TMC) with more than 7 million Lexus and Toyota hybrids sold as of September 2014,[6] followed by Honda Motor Co., Ltd. with cumulative global sales of more than 1.35 million hybrids as of June 2014,[7][8][9] Ford Motor Corporation with over 375 thousand hybrids sold in the United States through September 2014,[10][11][12][13] and the Hyundai Group with cumulative global sales of 200 thousand hybrids as of March 2014, including both Hyundai Motors and Kia Motors hybrid models.[14] As of September 2014, worldwide hybrid sales are led by the Toyota Prius liftback, with cumulative sales of 3.36 million units. The Prius nameplate has sold more than 4.7 million hybrids up to September 2014.[15]
Japan is the world's largest hybrid market with over 4 million hybrid vehicles sold through December 2014, followed by the United States with more than 3.5 million automobiles and SUVs sold.[16][17][18] The conventional Prius is the top selling hybrid car ever in both Japan and the U.S. Prius sales passed the 1 million mark in the U.S. in April 2011, and August 2011 in Japan.[19][20] Japan also has the world's highest hybrid market penetration. By 2013 the hybrid market share accounted for more than 30% of new standard passenger car sold, and about 20% new passenger vehicle sales including kei cars.[21] The Netherlands ranks second with a hybrid market share of 4.5% of new car sales in 2012.[22]
Contents
Classification
Types of powertrain
Main article: Hybrid vehicle drivetrain
The Saturn Vue Green Line is a mild hybrid.
The 2005-06 Chevrolet Silverado Hybrid is a mild hybrid using the electric motor mainly to power the accessories.
The BMW Concept 7 Series ActiveHybrid is a mild hybrid with an electric motor designed to increase power and performance.
- In parallel hybrids, the ICE and the electric motor are both connected to the mechanical transmission and can simultaneously transmit power to drive the wheels, usually through a conventional transmission. Honda's Integrated Motor Assist (IMA) system as found in the Insight, Civic, Accord, as well as the GM Belted Alternator/Starter (BAS Hybrid) system found in the Chevrolet Malibu hybrids are examples of production parallel hybrids.[23] The internal combustion engine of many parallel hybrids can also act as a generator for supplemental recharging. Currently, commercialized parallel hybrids use a full size combustion engine with a single, small (<20 kW) electric motor and small battery pack as the electric motor is designed to supplement the main engine, not to be the sole source of motive power from launch. Parallel hybrids are more efficient than comparable non-hybrid vehicles especially during urban stop-and-go conditions where the electric motor is permitted to contribute,[23] and during highway operation.
- In series hybrids, only the electric motor drives the drivetrain, and a smaller ICE works as a generator to power the electric motor or to recharge the batteries. They also usually have a larger battery pack than parallel hybrids, making them more expensive. Once the batteries are low, the small combustion engine can generate power at its optimum settings at all times, making them more efficient in extensive city driving.[23]
- Power-split hybrids have the benefits of a combination of series and parallel characteristics. As a result, they are more efficient overall, because series hybrids tend to be more efficient at lower speeds and parallel tend to be more efficient at high speeds; however, the cost of power-split the hybrid is higher than a pure parallel.[23] Examples of power-split (referred to by some as "series-parallel") hybrid powertrains include current models of Ford, General Motors, Lexus, Nissan, and Toyota.[23][24]
Types by degree of hybridization
Further information: Mild hybrid
- Full hybrid, sometimes also called a strong hybrid, is a vehicle that can run on just the engine, just the batteries, or a combination of both.[25] Ford's hybrid system, Toyota's Hybrid Synergy Drive and General Motors/Chrysler's Two-Mode Hybrid technologies are full hybrid systems.[26] The Toyota Prius, Ford Escape Hybrid, and Ford Fusion Hybrid are examples of full hybrids, as these cars can be moved forward on battery power alone. A large, high-capacity battery pack is needed for battery-only operation. These vehicles have a split power path allowing greater flexibility in the drivetrain by interconverting mechanical and electrical power, at some cost in complexity.
- Mild hybrid, is a vehicle that cannot be driven solely on its electric motor, because the electric motor does not have enough power to propel the vehicle on its own.[25][26] Mild hybrids only include some of the features found in hybrid technology, and usually achieve limited fuel consumption savings, up to 15 percent in urban driving and 8 to 10 percent overall cycle.[25][26] A mild hybrid is essentially a conventional vehicle with oversize starter motor, allowing the engine to be turned off whenever the car is coasting, braking, or stopped, yet restart quickly and cleanly. The motor is often mounted between the engine and transmission, taking the place of the torque converter, and is used to supply additional propulsion energy when accelerating. Accessories can continue to run on electrical power while the gasoline engine is off, and as in other hybrid designs, the motor is used for regenerative braking to recapture energy. As compared to full hybrids, mild hybrids have smaller batteries and a smaller, weaker motor/generator, which allows manufacturers to reduce cost and weight.[26]
- Honda's early hybrids including the first generation Insight used this design,[26] leveraging their reputation for design of small, efficient gasoline engines; their system is dubbed Integrated Motor Assist (IMA). Starting with the 2006 Civic Hybrid, the IMA system now can propel the vehicle solely on electric power during medium speed cruising. Another example is the 2005-2007 Chevrolet Silverado Hybrid, a full-size pickup truck.[26] Chevrolet was able to get a 10% improvement on the Silverado's fuel efficiency by shutting down and restarting the engine on demand and using regenerative braking. General Motors has also used its mild BAS Hybrid technology in other models such as the Saturn Vue Green Line, the Saturn Aura Greenline and the Mailbu Hybrid.[26]
Plug-in hybrids (PHEVs)
Main article: Plug-in hybrid
The BYD F3DM is the world's first mass-produced plug-in hybrid with an all-electric range of 40 to 60 miles.
Chinese battery manufacturer and automaker BYD Auto released the F3DM PHEV-62 (PHEV-100 km) hatchback to the Chinese fleet market on December 15, 2008, for 149,800 yuan (US $22,000).[29][30] General Motors launched the 2011 Chevrolet Volt series plug-in in December 2010.[31][32] The Volt displaced the Toyota Prius as the most fuel-efficient car sold in the United States.[33][34]
History
Further information: History of plug-in hybrids
Early days
The Lohner-Porsche Mixte Hybrid was the first gasoline-electric hybrid automobile.
Figure 1 of Henri Pieper's 1905 Hybrid Vehicle Patent Application.
In 1931 Erich Gaichen invented and drove from Altenburg to Berlin a 1/2 horsepower electric car containing features later incorporated into hybrid cars. Its maximum speed was 25 miles per hour (40 km/h), but it was licensed by the Motor Transport Office, taxed by the German Revenue Department and patented by the German Reichs-Patent Amt. The car battery was re-charged by the motor when the car went downhill. Additional power to charge the battery was provided by a cylinder of compressed air which was re-charged by small air pumps activated by vibrations of the chassis and the brakes and by igniting oxyhydrogen gas. An account of the car and his characterization as a "crank inventor" can be found in Arthur Koestler's autobiography, Arrow in the Blue, pages 269-271, which summarize a contemporaneous newspaper account written by Koestler. No production beyond the prototype was reported.
Predecessors of current technology
The regenerative braking system, a core design concept of most modern production HEVs, was developed in 1967 for the American Motors Amitron and called Energy Regeneration Brake by AMC.[40] This completely battery powered urban concept car was recharged by braking, thus increasing the range of the automobile.[41] The AMC Amitron was first use of regenerative braking technology in the U.S.[42]A more recent working prototype of the HEV was built by Victor Wouk (one of the scientists involved with the Henney Kilowatt, the first transistor-based electric car). Wouk's work with HEVs in the 1960s and 1970s earned him the title as the "Godfather of the Hybrid".[43] Wouk installed a prototype hybrid drivetrain (with a 16-kilowatt (21 hp) electric motor) into a 1972 Buick Skylark provided by GM for the 1970 Federal Clean Car Incentive Program, but the program was stopped by the United States Environmental Protection Agency (EPA) in 1976 while Eric Stork, the head of the EPA's vehicle emissions control program at the time, was accused of a prejudicial coverup.[44]
The regenerative brake concept was further developed in the early 1980s by David Arthurs, an electrical engineer, using off-the shelf components, military surplus, and an Opel GT.[45] The voltage controller to link the batteries, motor (a jet-engine starter motor), and DC generator was Arthurs'. The vehicle exhibited 75 miles per US gallon (3.1 L/100 km; 90 mpg-imp) fuel efficiency, and plans for it were marketed by Mother Earth News.[46]
In 1989, Audi produced its first iteration of the Audi Duo (the Audi C3 100 Avant Duo) experimental vehicle, a plug-in parallel hybrid based on the Audi 100 Avant quattro. This car had a 9.4 kilowatts (12.8 PS; 12.6 bhp) Siemens electric motor which drove the rear roadwheels. A trunk-mounted nickel-cadmium battery supplied energy to the motor that drove the rear wheels. The vehicle's front roadwheels were powered by a 2.3 litre five-cylinder petrol engine with an output of 100 kilowatts (136 PS; 134 bhp). The intent was to produce a vehicle which could operate on the engine in the country, and electric mode in the city. Mode of operation could be selected by the driver. Just ten vehicles are believed to have been made; one drawback was that due to the extra weight of the electric drive, the vehicles were less efficient when running on their engines alone than standard Audi 100s with the same engine.
Two years later, Audi, unveiled the second duo generation, the Audi 100 Duo - likewise based on the Audi 100 Avant quattro. Once again, this featured an electric motor, a 21.3 kilowatts (29.0 PS; 28.6 bhp) three-phase machine, driving the rear roadwheels. This time, however, the rear wheels were additionally powered via the Torsen centre differential from the main engine compartment, which housed a 2.0 litre four-cylinder engine.[citation needed]
In 1992, Volvo ECC was developed by Volvo. The Volvo ECC was built on the Volvo 850 platform. In contrast to most production hybrids, which use a gasoline piston engine to provide additional acceleration and to recharge the battery storage, the Volvo ECC used a gas turbine engine to drive the generator for recharging.
The Clinton administration initiated the Partnership for a New Generation of Vehicles (PNGV) program on 29 September 1993, that involved Chrysler, Ford, General Motors, USCAR, the DoE, and other various governmental agencies to engineer the next efficient and clean vehicle.[47] The United States National Research Council (USNRC) cited automakers' moves to produce HEVs as evidence that technologies developed under PNGV were being rapidly adopted on production lines, as called for under Goal 2. Based on information received from automakers, NRC reviewers questioned whether the "Big Three" would be able to move from the concept phase to cost effective, pre-production prototype vehicles by 2004, as set out in Goal 3.[48] The program was replaced by the hydrogen-focused FreedomCAR initiative by the George W. Bush administration in 2001,[49] an initiative to fund research too risky for the private sector to engage in, with the long-term goal of developing effectively carbon emission- and petroleum-free vehicles.
1998 saw the Esparante GTR-Q9 became the first Petrol-Electric Hybrid to race at Le Mans, although the car failed to qualify for the main event. The car managed to finished second in class at Petit Le Mans the same year.
Modern hybrids
See also: List of hybrid vehicles
The 2010 Ford Fusion Hybrid was launched in the U.S. in March 2009.[50]
The Toyota Prius sold 300 units in 1997 and 19,500 in 2000, and cumulative worldwide Prius sales reached the one million mark in April 2008.[51] By early 2010, the Prius global cumulative sales were estimated at 1.6 million units.[52][53] Toyota launched a second-generation Prius in 2004 and a third in 2009.[54] The 2010 Prius has an estimated U.S. Environmental Protection Agency combined fuel economy cycle of 50 miles per US gallon (4.7 L/100 km; 60 mpg-imp).[54]
The Audi Duo III was introduced in 1997, based on the Audi B5 A4 Avant, and was the only Duo to ever make it into series production.[2] The Duo III used the 1.9-litre Turbocharged Direct Injection (TDI) diesel engine, which was coupled with a 21 kilowatts (29 PS; 28 bhp) electric motor. Due to low demand for it because of its high price,[clarification needed] only about sixty Audi Duos were produced. Until the release of the Audi Q7 Hybrid in 2008, the Duo was the only European hybrid ever put into production.[2][55]
The Honda Civic Hybrid was introduced in February 2002 as a 2003 model, based on the seventh-generation Civic.[56] The 2003 Civic Hybrid appears identical to the non-hybrid version, but delivers 50 miles per US gallon (4.7 L/100 km; 60 mpg-imp), a 40 percent increase compared to a conventional Civic LX sedan.[56] Along with the conventional Civic, it received a styling update for 2004. The redesigned 2004 Toyota Prius (second generation) improved passenger room, cargo area, and power output, while increasing energy efficiency and reducing emissions. The Honda Insight first generation stopped being produced after 2006 and has a devoted base of owners. A second-generation Insight was launched in 2010. In 2004, Honda also released a hybrid version of the Accord but discontinued it in 2007, citing disappointing sales.[57]
The Ford Escape Hybrid, the first hybrid electric sport utility vehicle (SUV), was released in 2005. Toyota and Ford entered into a licensing agreement in March 2004 allowing Ford to use 20 patents[citation needed] from Toyota related to hybrid technology, although Ford's engine was independently designed and built.[citation needed] In exchange for the hybrid licenses, Ford licensed patents involving their European diesel engines to Toyota.[citation needed] Toyota announced calendar year 2005 hybrid electric versions of the Toyota Highlander Hybrid and Lexus RX 400h with 4WD-i, which uses a rear electric motor to power the rear wheels, negating the need for a transfer case.
In 2006, General Motors Saturn Division began to market a mild parallel hybrid, the 2007 Saturn Vue Green Line, which utilized GM's Belted Alternator/Starter (BAS Hybrid) system combined with a 2.4-litre L4 engine and an FWD automatic transmission. The same hybrid powertrain was also used to power the 2008 Saturn Aura Greenline and Malibu Hybrid models. As of December 2009, only the BAS-equipped Malibu is still in (limited) production.
In 2007, Lexus released a hybrid electric version of their GS sport sedan, the GS 450h, with a power output of 335 bhp.[58] The 2007 Camry Hybrid became available in summer 2006 in the United States and Canada. Nissan launched the Altima Hybrid with technology licensed by Toyota in 2007.[59]
Commencing in fall 2007, General Motors began to market their 2008 Two-Mode Hybrid models of their GMT900-based Chevrolet Tahoe and GMC Yukon SUVs, closely followed by the 2009 Cadillac Escalade Hybrid[60] version.[61] For the 2009 model year, General Motors released the same technology in their half-ton pickup truck models, the 2009 Chevrolet Silverado[62] and GMC Sierra[63] Two-Mode Hybrid models.
The Ford Fusion Hybrid officially debuted at the Greater Los Angeles Auto Show in November 2008,[64] and was launched to the U.S. market in March 2009, together with the second-generation Honda Insight and the Mercury Milan Hybrid.[50]
Latest developments
The 2011 Honda CR-Z hybrid was launched in Japan in February 2010, followed by the US in August 2010.[65]
- 2009–2010
The Mercedes-Benz S400 BlueHybrid was unveiled in the 2009 Chicago Auto Show,[68] and sales began in the U.S. in October 2009.[69][70] The S400 BlueHybrid is a mild hybrid and the first hybrid car to adopt a lithium ion battery.[68][71] The hybrid technology in the S400 was co-developed by Daimler AG and BMW.[26][68] The same hybrid technology is being used in the BMW ActiveHybrid 7, expected to go on sales in the U.S. and Europe by mid-2010.[72] In December 2009 BMW began sales of its full hybrid BMW ActiveHybrid X6, while Daimler launched the Mercedes-Benz ML450 Hybrid by lease only.[73][74]
The 2011 Toyota Auris Hybrid is the first mass-produced hybrid electric vehicle built in Europe.[75]
Mass production of the 2011 Toyota Auris Hybrid began in May 2010 at Toyota Manufacturing UK (TMUK) Burnaston plant and became the first mass-produced hybrid vehicle to be built in Europe.[75] Sales in the UK began in July 2010, at a price starting atGB£18,950 (US$27,450), GB£550 (US$800) less than the Toyota Prius.[78][79] The 2011 Auris Hybrid shares the same powertrain as the Prius, and combined fuel economy is 74.3 mpg-imp (3.80 L/100 km; 61.9 mpg-US).[80][81]
The 2011 Lincoln MKZ Hybrid was unveiled at the 2010 New York International Auto Show[82] and sales began in the U.S. in September 2010.[83] The MKZ Hybrid is the first hybrid version ever to have the same price as the gasoline-engine version of the same car.[84] The Porshe Cayenne Hybrid was launched in the U.S in late 2010.[32]
- 2011–2014
The Peugeot 3008 HYbrid4 was launched in the European market in 2012, becoming the world's first production diesel-electric hybrid. According to Peugeot the new hybrid delivers a fuel economy of up to 62 miles per US gallon (3.8 L/100 km; 74 mpg-imp) and CO2 emissions of 99g/km on the European test cycle.[91][92]
The 2012 Toyota Prius c was released in the U.S. in March 2012, and was launched in Japan as Toyota Aqua in December 2011.
Other hybrids released in the U.S. during 2012 are the Audi Q5 Hybrid, BMW 5 Series ActiveHybrid, BMW 3 series Hybrid, Ford C-Max Hybrid, Acura ILX Hybrid. Also during 2012 were released the next generation of Toyota Camry Hybrid and the Ford Fusion Hybrid, both of which offer significantly improved fuel economy in comparison with their previous generations.[97][98][99] The 2013 models of the Toyota Avalon Hybrid and the Volkswagen Jetta Hybrid were released in the U.S. in December 2012.[11]
Global sales of the Toyota Prius liftback passed the 3 million milestone in June 2013. The Prius liftbak is available in almost 80 countries and regions, and it is the world's best selling hybrid electric vehicle.[1] Toyota released the hybrid versions of the Corolla Axio sedan and Corolla Fielder station wagon in Japan in August 2013. Both cars are equipped with a 1.5-liter hybrid system similar to the one used in the Prius c.[100]
Sales of the Honda Vezel Hybrid SUV began in Japan began in December 2013.[101] The Range Rover Hybrid diesel-powered electric hybrid was unveiled at the 2013 Frankfurt Motor Show, and retail deliveries in Europe are slated to start in early 2014.[102] Ford Motor Company, the world's second largest manufacturer of hybrids after Toyota Motor Corporation, reached the milestone of 400,000 hybrid electric vehicles produced in November 2014.[103] After 18 years since the introduction of hybrid cars, Japan became in 2014 the first country to reach sales of over 1 million hybrid cars in a single year, and also the Japanese market surpassed the United States as the world's largest hybrid market.[16][104]
Sales and rankings
As of December 2014, Japan and the United States are the world's market leaders in hybrid sales, Japan with over 4 million units sold and the U.S. with more than 3.5 million.[16][17][18] Cumulative European sales totaled over 925,000 hybrids through December 2014.[105][106][107] As of August 2014, more than 130,000 hybrids have been sold in Canada, of which, over 100,000 are Toyota and Lexus models.[108] In addition, more than 370,000 Lexus and Toyota models have been sold in other regions of the world as of September 2014, of which, over 50,000 were sold in Australia by February 2014.[15][109]As of September 2014, about 9 million hybrid electric vehicles have been sold worldwide since their inception in 1997, led by Toyota Motor Company (TMC) with over 7 million Lexus and Toyota hybrids sold as of September 2014;[6] followed by Honda Motor Co., Ltd. with cumulative global sales of more than 1.35 million hybrids as of June 2014;[7][8][9] Ford Motor Corporation with over 375 thousand hybrids sold in the United States through September 2014, of which, around 9% are plug-in hybrids;[10][11][12][13] Hyundai Group with cumulative global sales of 200 thousand hybrids as of March 2014, including both Hyundai Motors and Kia Motors hybrid models;[14] and PSA Peugeot Citroën with over 50,000 diesel-powered hybrids sold in Europe through December 2013.[107]
TMC experienced record sales of hybrid cars during 2013, with 1,279,400 units sold worldwide, and it took only nine months to achieved one million hybrid sales.[110][111] Again in 2014, TMC sold a record one million hybrids in nine months.[6] Toyota hybrids combined with Lexus models reached 1 million units in May 2007,[112] and the U.S. reached the 1 million mark of sales of both brands by February 2009.[113] Worldwide sales of TMC hybrids totaled over 2 million vehicles by August 2009,[112] 3 million units by February 2011,[114] 5 million in March 2013,[115] and reached the 7 million mark in September 2014.[6]
The Toyota Prius is the top selling hybrid in both the U.S. and Japan, with more than 1 million units sold in each country.
As of September 2014, global hybrid sales are led by the Prius family, with sales of 4.7 million units representing 66.8% of TMC worldwide sales of 7.053 million Lexus and Toyota units through September 2014.[15] The Toyota Prius liftback is the leading model with cumulative sales of 3.36 million units through September 2014. Of these, 1.49 million were sold in Japan, 1.50 million in North America, 273,800 in Europe and 92,000 in the rest of the world.[15] Ranking second after the conventional Prius is the Toyota Aqua/Prius c, with global sales of 853,800 units, followed by the Prius v/α/+ with 498,000 units sold, the Camry Hybrid, with 474,900 units, and the Toyota Auris with 181,100 units.[15] U.S. sales of the Toyota Prius reached the 1.0 million milestone in early April 2011,[19] and cumulative sales of the Prius in Japan exceeded the 1 million mark in August 2011.[20] Global sales of Lexus brand hybrid vehicles worldwide reached the 500 thousand mark in November 2012.[119] The Lexus RX 400h/RX 450h is the top selling Lexus hybrid with 305,200 units, followed by the Lexus CT 200h with 207,600 units sold through September 2014.[15]
Country | Number of registered hybrids by year | ||||||||
---|---|---|---|---|---|---|---|---|---|
2014 | 2013 | 2012 | 2011 | 2010 | 2009[120] | 2008[121] | 2007[122] | ||
Over 1 million[16] | 679,100(1)[123] | 678,000(1)[124] | 316,300(1)[124] | 392,200(1)[124] | 334,000[125] | 94,259 | 69,015 | ||
452,152[18] | 495,771[18] | 434,498[11] | 268,752[126] | 274,210[127] | 290,271[127] | 312,386[127] | 352,274[127] | ||
42,813[128] | 46,785[129] | 27,730[130] | 13,340[131] | 9,443[132] | 9,399[133] | 9,137[133] | 7,268[134] | ||
37,215[135] | 29,129[135] | 24,900[136] | 23,391[137] | 22,127[138] | 14,645[139] | 15,385[139] | 15,971[139] | ||
27,435[140] | 26,348[141] | 21,438[142] | 12,622[143] | 10,661[144] | 8,374[144] | 6,464[144] | 7,591[144] | ||
10,341[145] | 18,356[146] | 19,519[147][148] | 14,874[149] | 16,111[150] | 16,122[151] | 11,837[151] | 3,013[151] | ||
Not available | ~15,000[152] | 14,595(1)[153] | Not available | 16,167(1) | 19,963[154] | 14,828 | |||
World | Over 1.57 million | Over 1.31 million | Over 1.22 million | - | - | 740,000[155] | 511,758 | 500,405 | |
Notes: (1) Partial sales, includes only Toyota/Lexus sales.[124] (2) Since 2011 French registrations include plug-in hybrids |
Japanese market
Toyota's hybrid sales in Japan since 1997, including both Toyota and Lexus models, passed the 1 million mark in July 2010,[156] 2 million in October 2012,[157] and topped the 3 million mark in March 2014.[15] Cumulative sales of the original Prius in Japan reached the 1 million mark in August 2011,[20] and sales of the Prius family vehicles totaled 2,551,554 units through September 2014.[158] Cumulative sales of Honda's hybrid vehicles since November 1999 reached 25,239 units by January 2009,[106] and in March 2010, Honda announced that the new 2010 Insight broke through 100,000 sales in Japan in just one year after its introduction.[159]
The Toyota Prius α was launched in Japan in May 2011.
A total of 315,669 Priuses were sold domestically in 2010, making the Prius the country's best-selling vehicle for the second straight year. Also the Prius broke Japan's annual sales record for a single model for the first time in 20 years, surpassing the Toyota Corolla, which in 1990 set the previous sales record with 300,008 units.[162] The Prius sold 252,528 units in 2011, becoming the best-selling vehicle for the third-consecutive year. This figure includes sales of the Prius α, launched in May 2011, and the Toyota Aqua, launched in December. Despite keeping to the top selling spot, total Prius sales for 2011 were 20% lower than 2010 due partly to the disruptions caused by the March 2011 Tōhoku earthquake and tsunami, and also because government incentives for hybrid cars were scaled back.[163][164] Nevertheless, during the 2011 Japanese fiscal year (April 1, 2011 through March 31, 2012), hybrid vehicles accounted for 16% of all new car sales in the country.[165] In May 2012, hybrid sales reached a record market share of 19.7% of new car sales in the country, including kei cars. Sales were led by the conventional Prius followed by the Toyota Aqua. Also during this month, hybrid sales represented 25% of Honda sales and 46% of Toyota sales in the country.[166]
The Toyota Aqua has been for two consecutive years, 2013 and 2014, the top selling new car in Japan.
Japan also has the world's highest hybrid market penetration. The hybrid market share of new car sales began to increase significantly in 2009, when the government implemented aggressive fiscal incentives for fuel efficient vehicles and the third generation Prius was introduced. That year, the hybrid market share of new car sales in the country, including kei cars, jumped from less than 5% in 2008 to over 10% in 2009. If only conventional passenger cars are accounted for, the hybrid market share was about 15%. By 2013 the hybrid market share accounted for more than 30% of the 2.9 million standard passenger vehicles sold, and about 20% of the 4.5 million passenger vehicles including kei cars.[21]
U.S. market
Further information: Hybrid electric vehicles in the United States
A total of 434,498 hybrid electric vehicles were sold during 2012, and the hybrid market share of total new car sales in the country was 3.0%, up from 2.1% in 2011.[11] During 2013 hybrid sales totaled 495,685 units, up 14.1% from 2012, and representing a market share of 3.19% of new car sales.[12] Hybrid sales totaled 452,152 units in 2014, down 8.8% from the previous year. The hybrid market share fell to 2.75% of new car sales, the lowest since 2011. The best selling Prius Liftback was down 15.4% from 2013, driving the decline of the segment sales.[18] The top five selling hybrids in 2014 were the conventional Prius (122,776), Prius c (40,570), second generation Camry Hybrid (39,515), second generation Fusion Hybrid (35,405), and the Prius v (30,762), all down from the previous year.[18] Combined Prius family vehicles reached 194,108 units representing a market share of 42.9%, down from 44.8% the previous year.[12][18]
California has been the state leading hybrid sales in the U.S. with 55,553 vehicles sold in 2009,[120] 74,932 in 2008,[121] and 91,417 in 2007.[122] In 2009 it was followed by New York (15,438) and Florida (14,949).[120] In terms of new hybrids sold per capita, the District of Columbia was the leader in 2009 with 3.79 hybrids per 1000 residents, followed by California (1.54) and Washington (1.53).[120] The top 5 U. S. metropolitan area markets for sales of hybrid electric vehicles in 2009 were Los Angeles (26,677), New York (21,193), San Francisco (15,799), Washington, D.C. (11,595), and Chicago (8,990).[120]
Considering hybrid sales between January 2010 through September 2011, the top selling metropolitan region was the San Francisco Bay Area, with 8.4% of all new cars sold during that period, followed by Monterey-Salinas with 6.9%, and Eugene, Oregon, with 6.1%. The following seven top selling markets are also on the West Coast, including Seattle-Tacoma and Los Angeles with 5.7%, San Diego with 5.6%, and Portland with 5.4%. The Washington D.C. Metro Area, with 4.2%, is the next best selling region out of the West Coast.[172]
Sales of Prius family vehicles in California represented 26% of all Prius purchases in the U.S. during 2012. With 60,688 units sold during this year, the Prius became the best selling vehicle in California, ahead of the previous leader, the Honda Civic (57,124 units) and the third ranked, the Toyota Camry (50,250 units).[173] Again in 2013, the Prius nameplate was the best selling vehicle in California with 69,728 units sold in the state, ahead of the Honda Civic (66,982) and the Honda Accord (63,194).[174][175]
European market
Sales of hybrids in Europe went up from around 9,000 units in 2004 to 39,880 in 2006, with Toyota accounting for 91% of hybrid sales and Honda with 3,410 units sold that year. Cumulative sales of Toyota hybrids since 2000 reached 69,674 units in 2006, while Honda hybrid sales reached over 8,000 units.[176] By January 2009, Honda had sold 35,149 hybrids in Europe, of which 34,757 were Honda Civic Hybrids.[106] During 2008 combined sales of Toyota and Lexus hybrids in Europe were 57,819 units, representing 5.2% of total Toyota sales in the region. Toyota sales were led by Prius with 41,495 units.[177] Cumulative sales of the Toyota Prius reached 100,000 units in 2008 and the 200,000 mark was reached in July 2010. The UK has been one of the leading European markets for the Prius since its inception, with 20% of Prius sales in Europe by 2010.[178]
The Toyota Yaris Hybrid, released in 2012, is only available in Europe.
As of December 2014, cumulative TMC sales since the Prius went on in Europe in 2000 totaled 840,000 vehicles, of which, over 178,000 were sold in 2014.[105] The top selling Toyota hybrids through September 2014 are the conventional Prius (273,800), Toyota Auris (176.300), and the Yaris Hybrid (115,300). The top selling Lexus models are the Lexus RX 400h/RX 450h with 90,100 units, and the Lexus CT 200h with 49,000 units.[15] As of December 2012, hybrid vehicles accounted for about 1% of passenger car registrations in the EU Member States, led by the Netherlands with a market share of 4.5% of total passenger car sales in 2012.[22] During the first nine months of 2013, over 118,000 hybrids were sold in Western Europe representing a 1.4% market share of new car sales in the region.[183]
- UK
- France
- The Netherlands
- Germany
- Spain
Technology
The varieties of hybrid electric designs can be differentiated by the structure of the hybrid vehicle drivetrain, the fuel type, and the mode of operation.In 2007, several automobile manufacturers announced that future vehicles will use aspects of hybrid electric technology to reduce fuel consumption without the use of the hybrid drivetrain. Regenerative braking can be used to recapture energy and stored to power electrical accessories, such as air conditioning. Shutting down the engine at idle can also be used to reduce fuel consumption and reduce emissions without the addition of a hybrid drivetrain. In both cases, some of the advantages of hybrid electric technology are gained while additional cost and weight may be limited to the addition of larger batteries and starter motors. There is no standard terminology for such vehicles, although they may be termed mild hybrids.
Engines and fuel sources
Fossil fuels
Main article: Fossil fuel
Free-piston engines could be used to generate electricity as efficiently as, and less expensively than, fuel cells.[195]- Gasoline
- Diesel
PSA Peugeot Citroën has unveiled two demonstrator vehicles featuring a diesel-electric hybrid drivetrain: the Peugeot 307, Citroën C4 Hybride HDi and Citroën C-Cactus.[197] Volkswagen made a prototype diesel-electric hybrid car that achieved 2 L/100 km (140 mpg-imp; 120 mpg-US) fuel economy, but has yet to sell a hybrid vehicle. General Motors has been testing the Opel Astra Diesel Hybrid. There have been no concrete dates suggested for these vehicles, but press statements have suggested production vehicles would not appear before 2009.
At the Frankfurt Motor Show in September 2009 both Mercedes and BMW displayed diesel-electric hybrids.[198]
Robert Bosch GmbH is supplying hybrid diesel-electric technology to diverse automakers and models, including the Peugeot 308.[199]
So far, production diesel-electric engines have mostly[vague] appeared in mass transit buses.[citation needed]
FedEx, along with Eaton Corp. in the USA and Iveco in Europe, has begun deploying a small fleet of Hybrid diesel electric delivery trucks.[200] As of October 2007, Fedex operates more than 100 diesel electric hybrids in North America, Asia and Europe.[201]
- Liquefied petroleum gas
- Hydrogen
An HFEV is an all-electric car featuring an open-source battery in the form of a hydrogen tank and the atmosphere. HFEVs may also comprise closed-cell batteries for the purpose of power storage from regenerative braking, but this does not change the source of the motivation. It implies the HFEV is an electric car with two types of batteries. Since HFEVs are purely electric, and do not contain any type of heat engine, they are not hybrids.
Biofuels
Main articles: biofuel and flexifuel vehicle
The Ford Escape Hybrid was the first hybrid electric vehicle with a flex-fuel engine capable of running on E85 fuel.
The Chevrolet Volt plug-in hybrid electric vehicle would be the first commercially available flex-fuel plug-in hybrid capable of adapting the propulsion to the biofuels used in several world markets such as the ethanol blend E85 in the U.S., or E100 in Brazil, or biodiesel in Sweden.[205][206] The Volt will be E85 flex-fuel capable about a year after its introduction.[207][208]
Electric machines
In split path vehicles (Toyota, Ford, GM, Chrysler) there are two electrical machines, one of which functions as a motor primarily, and the other functions as a generator primarily. One of the primary requirements of these machines is that they are very efficient, as the electrical portion of the energy must be converted from the engine to the generator, through two inverters, through the motor again and then to the wheels.Most of the electric machines used in hybrid vehicles are brushless DC motors (BLDC). Specifically, they are of a type called an interior permanent magnet (IPM) machine (or motor). These machines are wound similarly to the induction motors found in a typical home, but (for high efficiency) use very strong rare earth magnets in the rotor. These magnets contain neodymium, iron and boron, and are therefore called Neodymium magnets.
The price of Neodymium went through a price bubble due to Chinese export restriction in 2010-2011, rising from $50/kg at the start of 2010 to $500/kg by the summer of 2011. This resulted in 'demand destruction' as many producers quickly turned to substituting induction motors in their cars to defend their production line. This was in spite of such motors inferior 'power to weight' ratio attributes significantly impacting all but the most powerful (energy guzzling) motor sizes, e.g. those used in the Tesla. As of April 2014 there are other non-Chinese producers of Neodymium and it's price/kg not much more than it was in 2010. Cutting edge U.K. motors that are now being produced are using Neodymium Permanent Magnet technology. As security of supply returns, it is certain that there will accordingly be a return to superior motor designs that NdFeB Permanent Magnets enable.
Design considerations
In some cases, manufacturers are producing HEVs that use the added energy provided by the hybrid systems to give vehicles a power boost, rather than significantly improved fuel efficiency compared to their traditional counterparts.[209] The trade-off between added performance and improved fuel efficiency is partly controlled by the software within the hybrid system and partly the result of the engine, battery and motor size. In the future, manufacturers may provide HEV owners with the ability to partially control this balance (fuel efficiency vs. added performance) as they wish, through a user-controlled setting.[210] Toyota announced in January, 2006 that it was considering a "high-efficiency" button.[citation needed]Conversion kits
Main article: Electric vehicle conversion
One can buy a stock hybrid or convert a stock petroleum car to a hybrid electric vehicle using an aftermarket hybrid kit.[211]Environmental impact
For more details on this topic, see Hybrid vehicle § Environmental issues.
Fuel consumption
Main article: Fuel efficiency
For more details on this topic, see Hybrid vehicle § Fuel consumption and emissions reductions.
Current HEVs reduce petroleum consumption under certain
circumstances, compared to otherwise similar conventional vehicles,
primarily by using three mechanisms:[212]- Reducing wasted energy during idle/low output, generally by turning the ICE off
- Recapturing waste energy (i.e. regenerative braking)
- Reducing the size and power of the ICE, and hence inefficiencies from under-utilization, by using the added power from the electric motor to compensate for the loss in peak power output from the smaller ICE.
Many hybrids use the Atkinson cycle, which gives greater efficiency, but less power for the size of engine.
Noise
See also: Electric vehicle warning sounds
Reduced noise emissions resulting from substantial use of the electric motor at idling and low speeds, leading to roadway noise reduction,[214] in comparison to conventional gasoline or diesel powered engine vehicles, resulting in beneficial noise health effects
(although road noise from tires and wind, the loudest noises at highway
speeds from the interior of most vehicles, are not affected by the
hybrid design alone). Reduced noise may not be beneficial for all road
users, as blind people or the visually impaired consider the noise of
combustion engines a helpful aid while crossing streets and feel quiet
hybrids could pose an unexpected hazard.[215] Tests have shown that vehicles operating in electric mode can be particularly hard to hear below 20 mph (32 km/h).[216][217]A 2009 study conducted by the NHTSA found that crashes involving pedestrian and bicyclist have higher incidence rates for hybrids than internal combustion engine vehicles in certain vehicle maneuvers. These accidents commonly occurred on in zones with low speed limits, during daytime and in clear weather.[218]
In January 2010 the Japanese Ministry of Land, Infrastructure, Transport and Tourism issued guidelines for hybrid and other near-silent vehicles.[219] The Pedestrian Safety Enhancement Act of 2010 was approved by the U.S. Congress in December 2010,[220][221][222] and the bill was signed into law by President Barack Obama on January 4, 2011.[223] A proposed rule was published for comment by the National Highway Traffic Safety Administration (NHTSA) in January, 2013. It would require hybrids and electric vehicles traveling at less than 18.6 miles per hour (30 km/h) to emit warning sounds that pedestrians must be able to hear over background noises.[224][225] The rules are scheduled to go into effect in September 2014.[225][226] In April 2014 the European Parliament approved legislation that requires the mandatory use of Acoustic Vehicle Alerting Systems (AVAS) for all new electric and hybrid electric vehicles, and car manufacturers have to comply within 5 years.[227][228]
As of mid-2010, and in advance of upcoming legislation, some carmakers announced their decision to address this safety issue shared by regular hybrids and all types of plug-in electric vehicles, and as a result, the Nissan Leaf and Chevrolet Volt, both launched in late 2010, and the Nissan Fuga hybrid and the Fisker Karma plug-in hybrid, both launched in 2011, include synthesized sounds to alert pedestrians, the blind and others to their presence.[229][230][231][232] Toyota introduced its Vehicle Proximity Notification System (VPNS) in the United States in all 2012 model year Prius family vehicles, including the Prius v, Prius Plug-in Hybrid and the standard Prius.[233][234]
There is also aftermarket technology available in California to make hybrids sound more like conventional combustion engine cars when the vehicle goes into the silent electric mode (EV mode).[235] On August 2010 Toyota began sales in Japan of an onboard device designed to automatically emit a synthesized sound of an electric motor when the Prius is operating as an electric vehicle at speeds up to approximately 25 kilometres per hour (16 mph). Toyota plans to use other versions of the device for use in gasoline-electric hybrids, plug-in hybrids, electric vehicles as well as fuel-cell hybrid vehicles planned for mass production.[219]
Pollution
See also: Hybrid Scorecard
Battery toxicity is a concern, although today's hybrids use NiMH batteries, not the environmentally problematic rechargeable nickel cadmium. "Nickel metal hydride batteries are benign. They can be fully recycled," says Ron Cogan, editor of the Green Car Journal.[this quote needs a citation]
Toyota and Honda say that they will recycle dead batteries and that
disposal will pose no toxic hazards. Toyota puts a phone number on each
battery, and they pay a $200 "bounty" for each battery to help ensure
that it will be properly recycled.The following table shows the fuel economy ratings and pollution indicators for the top ten most fuel efficient hybrids available in the U.S. market (as of June 2014) for model year 2013 and 2014, according to the official ratings of the U.S. Environmental Protection Agency.
among EPA's top ten 2013/14 model year most fuel efficient hybrid models available in the U.S.[236][237]
Vehicle | Year model |
EPA Combined mileage (mpg) |
EPA City (mpg) |
EPA Highway (mpg) |
Annual fuel cost (1) (USD) |
Tailpipe emissions (grams per mile CO2) |
EPA Air Pollution Score(2) |
Annual Petroleum Use (barrel) |
---|---|---|---|---|---|---|---|---|
Toyota Prius c | 2013/14 | 50 | 53 | 46 | US$1,050 | 178 | 7/8* | 6.6 |
Toyota Prius (3rd gen) | 2013/14 | 50 | 51 | 48 | US$1,050 | 179 | 7/9* | 6.6 |
Honda Accord (2nd gen) | 2014 | 47 | 50 | 45 | US$1,100 | 188 | 7/8* | 7.0 |
Honda Civic Hybrid (3rd gen) | 2014 | 45 | 44 | 47 | US$1,150 | 196 | 7/9* | 7.3 |
Volkswagen Jetta Hybrid | 2013/14 | 45 | 42 | 48 | US$1,250 | 200 | 7/9* | 7.3 |
Ford Fusion (2nd gen) | 2013/14 | 42 | 44 | 41 | US$1,250 | 209 | 7/9* | 7.8 |
Honda Insight (2nd gen) Automatic and regular |
2013/14 | 42 | 41 | 44 | US$1,250 | 209/210 | 7/9* | 7.8 |
Lexus CT 200h | 2013/14 | 42 | 43 | 40 | US$1,250 | 179 | 7/8* | 7.8 |
Toyota Prius v | 2013/14 | 42 | 44 | 40 | US$1,250 | 211 | 7/8* | 7.8 |
Toyota Camry Hybrid LE (2nd gen) | 2012/14 | 41 | 43 | 39 | US$1,250 | 215 | 7/9* | 8.0 |
Source: U.S. Department of Energy and U.S. Environmental Protection Agency[236] Notes: (1) Estimates assumes 15,000 miles (24,000 km)per year (45% highway, 55% city) using average fuel price of US$3.48/gallon for regular gasoline and US$3.81/gallon for premium gasoline (national average as of June 13, 2014). (2) All states except California and Northeastern states, * otherwise.[236] |
Vehicle types
Motorcycles
Companies such as Zero Motorcycles[238] and Vectrix have market-ready all-electric motorcycles available now, but the pairing of electrical components and an internal combustion engine (ICE) has made packaging cumbersome, especially for niche brands.[239]Also, eCycle Inc produces series diesel-electric motorcycles, with a top speed of 80 mph (130 km/h) and a target retail price of $5500.[240]
Peugeot HYmotion3 compressor,[241][242] a hybrid scooter is a three-wheeler that uses two separate power sources to power the front and back wheels. The back wheel is powered by a single cylinder 125 cc, 20 bhp (15 kW) single cylinder motor while the front wheels are each driven by their own electric motor. When the bike is moving up to 10 km/h only the electric motors are used on a stop-start basis reducing the amount of carbon emissions.[243]
SEMA has announced that Yamaha is going to launch one in 2010, with Honda following a year later, fueling a competition to reign in new customers and set new standards for mobility. Each company hopes to provide the capability to reach 60 miles (97 km) per charge by adopting advanced lithium-ion batteries to accomplish their claims. These proposed hybrid motorcycles could incorporate components from the upcoming Honda Insight car and its hybrid powertrain. The ability to mass-produce these items helps to overcome the investment hurdles faced by start-up brands and bring new engineering concepts into mainstream markets.[239]
Automobiles and light trucks
See also: List of hybrid vehicles
High performance cars
As emissions regulations become tougher for manufacturers to adhere to, a new generation of high-performance cars will be powered by hybrid technology (for example the Porsche GT3 hybrid racing car). Aside from the emissions benefits of a hybrid system, the immediately available torque which is produced from electric motor(s) can lead to performance benefits by addressing the power curve weaknesses of a traditional combustion engine.[244]Taxis
See also: Hybrid taxi
A Ford Escape Hybrid hybrid-electric taxi in New York City.
Hybrid-powered bus
Buses
Main article: Hybrid electric bus
Hybrid technology for buses has seen increased attention since recent
battery developments decreased battery weight significantly.
Drivetrains consist of conventional diesel engines and gas turbines.
Some designs concentrate on using car engines, recent designs have
focused on using conventional diesel engines already used in bus
designs, to save on engineering and training costs. Several
manufacturers are currently working on new hybrid designs, or hybrid
drivetrains that fit into existing chassis offerings without major
re-design. A challenge to hybrid buses may still come from cheaper
lightweight imports from the former Eastern block countries or China,
where national operators are looking at fuel consumption issues
surrounding the weight of the bus, which has increased with recent bus
technology innovations such as glazing, air conditioning and electrical
systems. A hybrid bus can also deliver fuel economy though through the
hybrid drivetrain. Hybrid technology is also being promoted by
environmentally concerned transit authorities.Trucks
Main article: Hybrid electric truck
In 2003, GM introduced a hybrid diesel-electric
military (light) truck, equipped with a diesel electric and a fuel cell
auxiliary power unit. Hybrid electric light trucks were introduced in
2004 by Mercedes Benz (Sprinter) and Micro-Vett SPA (Daily Bimodale). International Truck and Engine Corp. and Eaton Corp.
have been selected to manufacture diesel-electric hybrid trucks for a
US pilot program serving the utility industry in 2004. In mid-2005 Isuzu
introduced the Elf Diesel Hybrid Truck on the Japanese Market. They
claim that approximately 300 vehicles, mostly route buses are using
Hinos HIMR (Hybrid Inverter Controlled Motor & Retarder) system. In
2007, high petroleum price means a hard sell for hybrid trucks[250] and appears the first U.S. production hybrid truck (International DuraStar Hybrid).[251]
Hino hybrid diesel-electric truck.
- Big mining machines like the Liebherr T 282B dump truck or Keaton Vandersteen LeTourneau L-2350 wheel loader are powered that way. Also there was several models of BelAZ (7530 and 7560 series) in USSR (now in Belarus) since the middle of 1970th.[252]
- NASA's huge Crawler-Transporters are diesel-electric.
- Mitsubishi Fuso Canter Eco Hybrid is a diesel-electric commercial truck.
- Azure Dynamics Balance Hybrid Electric is a gasonline-hybrid electric medium dutry truck based on the Ford E-450 chassis.
- Hino Motors (a Toyota subsidiary) has the world's first production hybrid electric truck in Australia (110 kW or 150 hp diesel engine plus a 23 kW or 31 hp electric motor).[253]
Hybrid electric truck technology and powertrain maker: ZF Friedrichshafen, EPower Engine Systems.
By a voice vote, the United States House of Representatives approved the Heavy Duty Hybrid Vehicle Research, Development, and Demonstration Act of 2009 ( for heavy duty plug-in hybrid vehicles) authored by representative James Sensenbrenner.
Military vehicles
The United States Army's manned ground vehicles of the Future Combat System all use a hybrid electric drive consisting of a diesel engine to generate electrical power for mobility and all other vehicle subsystems. However, with the current 2010 DOD budget all FCS land vehicles have been put on hold. Other military hybrid prototypes include the Millenworks Light Utility Vehicle, the International FTTS, HEMTT model A3, and the Shadow RST-V.Locomotives
Main article: Hybrid Locomotive
In May 2003, JR East started test runs with the so-called NE (new energy) train and validated the system's functionality (series hybrid with lithium ion battery) in cold regions. In 2004, Railpower Technologies had been running pilots in the US with the so-called Green Goats,[254] which led to orders by the Union Pacific[255] and Canadian Pacific[256] Railways starting in early 2005.Railpower offers hybrid electric road switchers,[257] as does GE.[258] Diesel-electric locomotives may not always be considered HEVs, not having energy storage on board, unless they are fed with electricity via a collector for short distances (for example, in tunnels with emission limits), in which case they are better classified as dual-mode vehicles.
Marine and other aquatic
Main article: Electric boat
For large boats that are already diesel-electric, the upgrade to
hybrid can be as straightforward as adding a large battery bank and
control equipment; this configuration can provide fuel saving for the
operators as well as being more environmentally sensitive.[259]Producers of marine hybrid propulsion include:
Aircraft
Boeing has stated that for the subsonic concept, hybrid electric engine technology is a clear winner. Hybrid electric propulsion has the potential to shorten takeoff distance and reduce noise.[261] The AgustaWestland Project Zero is one aircraft that is intended to be hybrid-electric.The DA36 E-Star, an aircraft designed by Siemens, Diamond Aircraft and EADS, employs a series hybrid powertrain with the propeller being turned only by a Siemens 70 kW (94 hp) electric motor. The aim is to reduce fuel consumption and emissions by up to 25%. An onboard 40 hp (30 kW) Austro Engines Wankel rotary engine and generator provides the electricity because of the small size, light weight and high power to weight ration of the engines. The electric motor also uses electricity stored in batteries to take off and climb reducing sound emissions by eliminating the engine. The series hybrid powertrain using the Wankel engine reduces the weight of the plane by 100 kilos to its predecessor. The DA36 E-Star first flew in June 2013, making this the first ever flight of a series hybrid powertrain. Diamond aircraft state that the technology using Wankel engines is scalable to a 100 seater aircraft.[262][263]
Hybrid premium and showroom cost parity
Vehicle type | Fuel used |
---|---|
All-petroleum vehicle | Most use of petroleum |
Regular hybrid electric vehicle | Less use of petroleum, but non-pluginable |
Plug-in hybrid vehicle | Residual use of petroleum. More use of electricity |
All-electric vehicle | Most use of electricity |
Consumer Reports ran an article in April 2006 stating that HEVs would not pay for themselves over 5 years of ownership. However, this included an error with charging the "hybrid premium" twice.[264] When corrected, the Honda Civic Hybrid and Toyota Prius did have a payback period of slightly less than 5 years.[265] This includes conservative estimates with depreciation (seen as more depreciation than a conventional vehicle, although that is not the current norm) and with progressively higher gas prices. In particular, the Consumer Reports article assumed $2/U.S. gallon for 3 years, $3/U.S. gallon for one year and $4/U.S. gallon the last year. As recent events have shown, this is a volatile market and hard to predict. For 2006, gas prices ranged from low $2 to low $3, averaging about $2.60/U.S. gallon.
A January 2007 analysis by Intellichoice.com shows that all 22 currently available HEVs will save their owners money over a five-year period. The most savings is for the Toyota Prius, which has a five-year cost of ownership 40.3% lower than the cost of comparable non-hybrid vehicles.[266]
A report in the Greeley Tribune says that over the five years it would typically take for a new car owner to pay off the vehicle cost differential, a hybrid Camry driver could save up to $6,700 in gasoline at current gasoline prices, with hybrid tax incentives as an additional saving.[267]
In countries with incentives to fight against global warming and contamination and promote vehicle fuel efficiency, the pay-back period can be immediate, and all-combustion-engine vehicles can cost more than hybrids because they generate more pollution.
Toyota and Honda have already said they've halved the incremental cost of electric hybrids and see cost parity in the future (even without incentives).[268]
Raw materials shortage
This section is outdated. Please update this article to reflect recent events or newly available information. (August 2013) |
However, nearly all the rare earth elements in the world come from China,[271] and one analyst believes that an overall increase in Chinese electronics manufacturing may consume this entire supply by 2012.[270] In addition, export quotas on Chinese rare earth exports have resulted in a generally shaky supply of those metals.[269][272]
A few non-Chinese sources such as the advanced Hoidas Lake project in northern Canada and Mt Weld in Australia are currently under development,[272] however it is not known if these sources will be developed before a shortage hits.
Legislation and incentives
In order to encourage the purchase of HEVs, several countries have introduced legislation for incentives and ecotaxes.Canada
Residents of Ontario and Quebec in Canada can claim a rebate on the Provincial Retail Sales Tax of up to $2,000 CDN on the purchase or lease of a hybrid electric vehicle.[273] Ontario has a green license plate for hybrid car users and was to announce a slew of benefits to go along with it in 2008.[274] Residents in British Columbia are eligible for a 100% reduction of sales tax up to a maximum of $2,000 if the hybrid electric vehicle is purchased or leased before April 1, 2011, (extended in 2007/2008 budget from March 31, 2008, and expanded from a maximum of only $1,000 from April 1, 2008, to March 31, 2009, at which point the concession was scheduled to expire.)[275] Prince Edward Island residents can claim rebates on the Provincial Sales Tax of up to $3,000 CDN on the purchase or lease of any hybrid vehicles since March 30, 2004.[276]Israel
In Haifa, hybrid vehicles are entitled to a free parking in city's parking lots for domestic citizens. Other cities, such as Petah-Tikva, have quickly adopted similar free parking for hybrid cars.Japan
In 2009 the Japanese government implemented a set of policies and incentives that included a scrappage program, tax breaks on hybrid vehicles and other low emission cars and trucks, and a higher levy on gasoline that raised prices in the order of USD 4.50 per gallon. New hybrid car sales for 2009 were almost triple those for 2008.[52][160]Jordan
In Jordan, customs and sales tax reduced for all hybrid vehicles from 55% to 25% of the vehicle list price, 12.5% customs fees and sales tax, if the new hybrid is a replacement for an old car (more than 10 years age).Netherlands
In the Netherlands, the vehicle registration tax (VRT), payable when a car is sold to its first buyer, can earn the owner of an HEV a discount up to €6,000.New Zealand
In Christchurch, hybrid vehicles are entitled to an hour free parking in city council parking buildings. Where those buildings already provide an hour free, hybrid vehicles are entitled to an extra hour free.Republic of Ireland
In the Republic of Ireland, a discount of up to €1500 on VRT for hybrids, and up to €2500 for plugin hybrids is available until 31 December 2012.[277] Previously there was a potential reduction of 50% of VRT applicable before July 2008, when VRT rates were based on engine size, rather than the current CO2 emissions system.[278]Sweden
In Sweden there is an "Eco car" subsidy of SEK 10 000 (~ USD 1.600) cash payout to private car owners. For fringe benefit cars there is a reduction of the benefit tax of 40% for EVs & HEVs and 20% for other "Eco cars".[279]United Kingdom
Drivers of HEVs in the United Kingdom benefit from the lowest band of vehicle excise duty (car tax), which is based on carbon dioxide emissions. In central London, these vehicles are also exempt from the £8 daily London congestion charge.[280] Due to their low levels of regulated emissions, the greenest cars are eligible for 100% discount under the current system. To be eligible the car must be on the current Power Shift Register.[281] At present, these include the cleanest LPG and natural gas cars and most hybrid-, battery- and fuel cell-electric vehicles.United States
Some shopping malls in Northern Virginia have designated reserved parking spaces for electric hybrid cars.
Federal
Further information: Hybrid tax credit
The purchase of hybrid electric cars qualifies for a federal income tax credit up to $3,400 on the purchaser's Federal income taxes.[282] The tax credit
is to be phased out two calendar quarters after the manufacturer
reaches 60,000 new cars sold in the following manner: it will be reduced
to 50% if delivered in either the third or fourth quarter after the
threshold is reached, to 25% in the fifth and sixth quarters, and 0%
thereafter.[283]As of April 2010 three auto manufactures have reached the 60,000 cap, Toyota Motor Company reached it in 2007, Honda in 2008, and as of April 1, 2010, all Ford Motor Company hybrid vehicles are also no longer eligible for this tax credit.[284] Vehicles purchased after December 31, 2010, are not eligible for this credit as this benefit will expire on this date.[282][284]
States and local
- Certain states (e.g., New York, California, Virginia, and Florida) allow singly occupied HEVs to enter the HOV lanes on the highway.
- California's clean air bumper sticker used to allow HEVs to access HOV lanes. Shown a RechargeIT's plug-in converted Prius (left) and a conventional Toyota Prius (right).
- Some states, e.g. California, exempt hybrid electric cars from the biennial smog inspection, which costs over $50 (as of 2004).
- The city of San Jose, California issued a free parking tag until 2007 when it became issued for a fee annually for hybrid electric cars that were purchased at a San Jose dealership. The qualified owners do not have to pay for parking in any city garage or road side parking meters.
- The city of Los Angeles, California offers free parking to all HEVs which started on 1 October 2004. The experiment is an extension to an existing offer of free parking for all pure electrical vehicles.
- In October 2005, the city of Baltimore, Maryland, started to offer discount on monthly parking in the city parking lots, and is considering free meter parking for HEVs. On 3 November 2005, the Boston Globe reports that the city council of Boston is considering the same treatment for hybrid electric cars.
- Annual vehicle registration fees in the District of Columbia are half ($36) that paid for conventional vehicles ($72).
See also
Wikinews has news related to: |
Wikimedia Commons has media related to Hybrid-powered vehicles. |
- Energy Policy Act of 2005
- Global Hybrid Cooperation
- Comparison of Toyota hybrids
- List of hybrid vehicles
- Low-carbon fuel standard
- Plug-in hybrid
- Plug-in electric vehicle
- Super Ultra Low Emission Vehicle
- UltraCommuter
Notes
- Eric Loveday (2011-07-01). "Hybrids rejoin California gridlock as HOV stickers expire today". AutoblogGreen. Retrieved 2011-07-03.
References
- Cox, C (2008). "Rare earth innovation: the silent shift to china". Herndon (VA): The Anchor House Inc. Retrieved 2008-03-18.
- Haxel, G; Hedrick J; Orris J (2006). "Rare earth elements critical resources for high technology" (PDF). Reston (VA): United States Geological Survey. USGS Fact Sheet: 087‐02.
- Lunn, J (3 October 2006). "Great western minerals" (PDF). London: Insigner Beaufort Equity Research. Retrieved 2008-03-18.
- New York City Taxis to go all hybrid by 2012 2007-05-22
- Mother Earth News article from 1978 on the original regenerative braking hybrid car
- GM Announces Chevrolet Volt Series Hybrid Concept Vehicle 2007-01-07
- Hybrid-Electric "Bus of the Future" Tested By Capital Metro.
- Israel Mulls Hybrid Taxis
- FedEx to Launch Commercial Hybrid-Electric Vans from Iveco in Europe
- About FedEx Hybrid Electric Vehicle in the USA
- 2004 Toyota Prius - Motor Trend Car of the Year
- "Looking for a hybrid? Prepare for a long wait" to obtain one (Star Tribune).
- Doctors Orders: Buy a Hybrid
External links
- Electric and Gas Hybrids at DMOZ
- Compare hybrid cars at FuelEconomy.gov
- How Much Is That Hybrid Electric Really Saving You? (Popular Mechanics)
- Hybrid and Electric Vehicles - The Electric Drive Gains Traction, IA-HEV, International Energy Agency, May 2013
- Series, Parallel, and series-parallel systems animation by Union of Concerned Scientists
- Lexus Hybrid Drive Technology
- Untangling the Hybrid Taxonomy, New York Times.
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2 in geologic time" (PDF). Journal of Geophysical Research 110 (C9): C09S05.1–C09S05.6. Bibcode:2005JGRC..11009S05A. doi:10.1029/2004JC002625. Retrieved 2008-12-31.
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