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CA6100SH8并联混合动力客车制动能量再生系统开发 被引量:2

Development on Braking Energy Regenerative System for CA6100SH8 Parallel Hybrid Electric Bus
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摘要 提出一种新的制动能量再生系统。通过在CA6100SH8混合动力客车原装ABS系统的基础上增加压力传感器、双向单通阀和补气阀,配上控制模块,实现了驾驶员的制动意图,并达到最佳的制动能量回收效果;同时还确保了电机失效时的可靠制动。实车试验验证了该系统的制动能量再生功能。 A new braking energy regeneration system is proposed in this paper. By adding pressure sensors, two-way check valve and air compensating valve with a control module on the original ABS system of hybrid electric bus CA6100SH8, the braking intent of driver is realized and the best effect of braking energy regeneration is achieved In addition, reliable braking is ensured in case of electric motor failure. Vehicle tests verify the brakingenergy regeneration function of the system.
出处 《汽车工程》 EI CSCD 北大核心 2008年第10期911-913,904,共4页 Automotive Engineering
基金 国家"863"电动汽车重大专项(2006AA11A108)资助
关键词 并联混合动力客车 制动能量再生系统 开发 parallel hybrid electric bus braking energy regeneration system development
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  • 1初亮.混合动力总成的控制算法和参数匹配研究[D].吉林:吉林大学汽车科学与工程学院,2002.
  • 2Tony Markel.ADVISOR 3.2 Overview and Demonstration[C].Proceedings of 2001 Joint ADVISOR/PSAT Vehicle Modeling Users Conference.Soutbfield,Michigan,August 28-29,2001.
  • 3第一汽车集团公司技术中心混合动力客车项目组.2005《解放牌混合动力城市客车的研究开发》课题验收报告[R].第一汽车集团公司技术中心,2005:3-5.
  • 4中国汽车技术研究中心标准化研究所.重型混合动力电动汽车能量消耗量试验方法(GB/T19754-2005)汽车标准汇编(上册)[S].2006:317-397.

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同被引文献28

  • 1王鹏宇,王庆年,胡安平,于远彬.基于Simulink-AMESim联合仿真的混合动力客车再生制动系统分析[J].吉林大学学报(工学版),2008,38(S1):7-11. 被引量:12
  • 2曾小华,王庆年,李骏,王伟华,初亮.基于ADVISOR2002混合动力汽车控制策略模块开发[J].汽车工程,2004,26(4):394-396. 被引量:50
  • 3耿聪,张欣,张良,刘溧,王勇.混合动力电动公交汽车(HEB)再生制动的控制策略与性能仿真[J].高技术通讯,2004,14(8):80-83. 被引量:6
  • 4张立军,朱博,贾云雷.依ECE法规进行汽车制动力分配新方法[J].辽宁工程技术大学学报(自然科学版),2005,24(2):276-279. 被引量:26
  • 5SOVRAN G, BLASER D. Quantifying the potential impacts of regenerative braking on a vehicle's tractive fuel consumption for the U. S. ,European,and Japanese driving schedules[C] // Proceedings of the SAE 2006 World Congress and Exhibition, April 3-7, 2006, Detroit, Michigan, USA, [S. l.]: SAE International Technical Papers, 2006 : 2006 01 0664.
  • 6GAO Y M, CHU I.,EHSANI M. Design and control principles of hybrid braking system for EV, HEV and FCVFC2 // Proceedings of the 2007 IEEE Vehicle Power and Propulsion Conference, Sep. 9-12, 2007, Arlington, Texas ,USA. [S. l. ] :IEEE Press,2007:384-391.
  • 7DUOBA M, BOHN T, LOHSE-BUSCH H. Investigating possible fuel economy bias due to regenerative braking in testing HEVs on 2WD and 4WD chassis dynamometers [C] // Proceedings of the SAE 2005 World Congress and Exhibition, April 11- 14, 2005, Detroit, Michigan, USA. [S. l.]: SAE International Technical Papers, 2005 :2005-01-0685.
  • 8WANG F,ZHONG H, MAO X J,et al. Regenerative braking algorithm for a parallel hybrid electric vehicle with continuously variable transmission[ C ] // Proceedings of the 2007 IEEE International Conference on Vehicular Electronics and Safety,Dec. 13-15,2007, Beijing, China. , [S. l.]: IEEE Press, 2007 : 1-4.
  • 9SHU J, ZHANG Y, YIN C I. Longitudinal control of hybrid electric buses using traction motor and pneumatic braking system[J]. WSEAS Transactions on Circuits and Systems, 2009,8 ( 11 ) : 873-882.
  • 10ZHANG J Z, CHEN X, ZHANG, P J. Integrated control of braking energy regeneration and pneumatic anti lock braking[J]. Proceedings of the Institution of Mechanical Engineers Part D: Journal of Automobile Engineering, 2010,224 : 587-610.

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