期刊文献+

电磁制动在汽车制动能量回收中应用分析 被引量:3

Applied Analysis on Electromagnetic Braking in the Vehicle Braking Energy Recovery
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摘要 介绍了三种汽车制动能量回收系统的工作原理和特点,简述了汽车电磁制动的工作原理,对电磁制动技术应用于汽车制动能量回收系统的必要性与可行性进行了分析。通过分析比较现有的电磁制动与制动能量回收系统集成的结构方案,提出了集成制动系统的研究重点和发展方向。集成制动系统的重点研究方向为:集成制动系统优化匹配设计、制动模式切换控制研究和集成制动系统功能的扩展。 The working principle and characteristic of the braking energy recovery system are introduced.The working principle of automotive electromagnetic braking is introduced. The necessity and feasibility of electromagnetic braking applied in the braking energy recovery system are analyzed. By comparing the existing structure of electromagnetic braking applied in the braking energy recovery system,the key technology and development direction of system integration are put forward. The key research direction of integrated system are the optimization design of integrated system,braking mode switch control research and the expansion of the integrated system function.
作者 涂琨 何仁
出处 《机械传动》 CSCD 北大核心 2016年第5期151-155,共5页 Journal of Mechanical Transmission
基金 国家自然科学基金(51275212)
关键词 电磁制动 制动能量回收 系统集成 Electromagnetic brake Braking energy recovery System integration
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参考文献15

  • 1BUCHWALD P,CHRISTENSEN H,LARSEN H,et al.Improvement of Citybus Fuel Economy Using a Hydraulic[J].SAE Paper,1979,790305:17.
  • 2NORMAN B,FRANK H,ANDREW A,et al.Improving Vehicle Fuel Economy with Hybrid Power System[J].SAE Paper,1978,780667:10.
  • 3WU P,LUO N,FRONCZAK F J,et al.Fuel Economy and Operating Charac-teristic of Hydropneumatic Energy Storage Automobile[J].SAE Paper,1985,851678:123-137.
  • 4BEACHLEY N H.Comparison of Accumulator and Flywheel Energy Storage for Motor Vehilcle Applications[J].Society of Automotive Engineers,1985,859136:478-483.
  • 5SCHILKE N A,DEHART A O,HEWKO L O,et al.Design of Engine-Flywheel Hybrid System for a Passenger Car[C].VECON'84:Fuel Efficient Power Trains and Vehicles.London:Institution of Mechanical Engineers,1984:255-275.
  • 6何仁.汽车制动能量再生方法的探讨[J].江苏大学学报(自然科学版),2003,24(6):1-4. 被引量:54
  • 7陈庆樟,何仁,商高高.汽车能量再生系统复合储能方式研究[C]∥中国汽车工程学会年会论文集.北京:中国汽车工程学会,2007:1027-1031.
  • 8林成涛,陈全世.燃料电池客车动力系统结构分析[J].公路交通科技,2003,20(5):133-137. 被引量:28
  • 9陈庆樟,何仁,商高高.汽车能量再生制动技术研究现状及其关键技术[J].拖拉机与农用运输车,2008,35(6):9-11. 被引量:11
  • 10GAY S E,EHSANI M.Integration of eddy current and fri-ction brakes in conventional and hybrid vehicles[J].SAE Paper,2005:2005-01-3455.

二级参考文献34

  • 1何建清,何仁,衣丰艳.车用电涡流缓速器的设计方法[J].汽车工程,2003,25(z1):110-118. 被引量:12
  • 2何仁.汽车制动能量再生方法的探讨[J].江苏大学学报(自然科学版),2003,24(6):1-4. 被引量:54
  • 3王美丽,林荣会.汽车制动能量的回收利用[J].青岛建筑工程学院学报,1993,14(4):80-83. 被引量:2
  • 4EIJI Nakamura, MASAYUKI Soga, AKIRA Sakai. Development of Electronically Controlled Brake System for Hybrid Vehicle[J] ,SAE paper,2002-01- 0300.
  • 5CHAN C C. The State of the Art of Electric and Hybrid Vehicle [ J ]. IEEE, 2002,90 ( 2 ) :247 - 275.
  • 6KOEHLER U, NIGGEMANN E. High Performance NicHe Metal Hybrid Batteries for Electric and Hybrid Vehicles[ C ]. EVS-15,1998.
  • 7AMET B J, HAINES L P. Combining Ultra-capacitors with Lead-acid Batteries [ C ], EVS-17,2000.
  • 8MORIMASA Hayashida, KAZUYUKI Narusawa, YUSHI Kamiya. Energy Regeneration of City Commuter-car by Ultracapacitor and Battery [ C ]. EVS- 16, 1999.
  • 9THOMAS Dietrich. UhraCaps-A new Energy Storage Device for Peak Power Applications [ C ]. EVS-18,2001.
  • 10BURKE A F, MILLER M. Update of Uhracapacitor Technololgy and Hybrid Vehicle Applications: Passenger Cars and Transit Buses [ C ]. EVS-18, 2001.

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