Design of Hybrid Electric Bus on Regenerative Braking System

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In order to improve efficiency of Electro-Hydraulic regenerative braking system on electric bus, this paper will analysis dynamic performance and typical driving condition of electric bus based on ADAMS to establish electric bus simulation model and AMEsim to built hydraulic regenerative braking system simulation model. After simulation, displacement of Pump, volume and working pressure of accumulator, ratio of driving coupler will be optimized. The acceleration performance of electric bus will be enhanced obviously after applying hydraulic regenerative braking system.

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333-337

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February 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yimin Gao, Liping Chen, Mehrdad Ehsani. Investigation of the Effectiveness of Regenerative Braking for EV and HEV [DB]. Detroit: SAE International, 1999. http: /www. sae. org.

DOI: 10.4271/1999-01-2910

Google Scholar

[2] Farhad Sangtarash, Vahid Esfahanian, Hassan Nehzati et. al. Effect of Different Regenerative Braking Performance and Fuel Economy in a Hybrid Electric Bus Employing CRUISE Vehicle Simulation [DB]. Detroit: SAE International, 2008. http: /www. sae. org.

DOI: 10.4271/2008-01-1561

Google Scholar

[3] Eiji Nakamura , Masayuki Soga , Akira Sakai. Development of electronically controlled brake system for hybrid vehicle [DB]. Detroit: SAE International, 2002. http: /www. sae. org.

DOI: 10.4271/2002-01-0300

Google Scholar

[4] Aldo Sorniotti, Massimiliano Curto. Racing Simulation of a Formula 1 Vehicle with Kinetic Energy Recovery System[C]. SAE, 2008-01-294.

DOI: 10.4271/2008-01-2964

Google Scholar

[5] Donghyun Kim , Hyunsoo Kim. Vehicle stability control with regenerative braking and electronic brake force distribution for a four-wheel drive hybrid electric vehicle[J]. Proceedings of the Institution of Mechanical Engineers , Part D, 2006 , 220 (6) : 683 -693.

DOI: 10.1243/09544070d00605

Google Scholar

[6] Yasushi Aoki, Kenji Suzuki, Hiroshi Nakano et. al. Development of Hydraulic Servo Brake System for Cooperative Control with Regenerative Brake [DB]. Detroit: SAE International, 2007. http: /www. sae. org.

DOI: 10.4271/2007-01-0868

Google Scholar

[7] Christian von Albrichsfeld , Jürgen Karner. Brake System for Hybrid and Electric Vehicles [DB]. Detroit: SAE International, 2009. http: /www. sae. org.

DOI: 10.4271/2009-01-1217

Google Scholar