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车载飞轮储能系统及其关键技术研究 被引量:9

Development and Key Technologies of Flywheel Energy Storage System for Vehicle
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摘要 飞轮储能系统具有储能密度大、充电快、高效无污染、使用寿命长等优点,将其用于电动汽车的储能装置正受到越来越多的关注。在介绍了车载飞轮应用原理的基础上结合飞轮的特点描述了其在各类电动汽车中的应用。阐述了飞轮材料、磁轴承技术与高性能电机技术在车载飞轮中的应用价值与特点,详细介绍了国内外发展现状并归纳总结。 The flywheel energy storage system (FESS) has many advantages such as high energy density, fast charge, high efficiency, pollution-free, longevity of service. As a new type of impetus of electric vehicle, the FESS was being paid more and more attention. The structure and principle of vehicle FESS were first described. Then based on the characteristics of FESS, its applications in different kinds of electric vehicles were introduced. Finally, the importance of the flywheel materials, high-performance motor and magnetic bearing technology for vehicle flywheel is pointed out and their development status at home and abroad was introduced in detail.
出处 《电机与控制应用》 北大核心 2016年第5期38-46,共9页 Electric machines & control application
基金 国家自然科学基金(61174055) 江苏省自然科学基金(BK2012707) 江苏省"333工程"资助(2014) 江苏省"青蓝工程"资助项目(2014) 江苏高校优势学科建设工程资助项目(2014)
关键词 车载飞轮 关键技术 磁轴承 高性能电机 vehicle flywheel key technologies magnetic bearing high performance motor
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参考文献26

  • 1陈俊武,陈香生.中国中长期碳减排战略目标初探(Ⅵ)——碳捕集与封存排放目标讨论[J].中外能源,2011,16(10):1-17. 被引量:10
  • 2宋永华,阳岳希,胡泽春.电动汽车电池的现状及发展趋势[J].电网技术,2011,35(4):1-7. 被引量:278
  • 3葛举生,王培红.新型飞轮储能技术及其应用展望[J].电力与能源,2012,33(2):181-184. 被引量:22
  • 4文少波,蒋书运.飞轮储能系统在汽车中的应用研究[J].机械设计与制造,2010(12):82-84. 被引量:13
  • 5ACARNLEY P P, MECROW B C, BURDESS J S, et al. Design principles for a flywheel energy store for road vehicles [ J ]. 1EEE Transactions on Industry Applications, 1996,32 (6) : 1402-1408.
  • 6HEARN C S, FLYNN M M, LEWIS M C, et al. Low cost flywheel energy storage for a fuel cell powered transit bus [ C ] // Vehicle Power and Propulsion Conference,2007 : 829-836.
  • 7WERFEL F N, FLOEGEL D U, RIEDEL T, et al. Flywheel challenge : HTS magnetic bearing [ C ]//Journal of Physics: Conference Series, 2006,43 ( 1 ) : 1007-1010.
  • 8ABRAHAMSSON J, HEDLUND M, KAMF T, et al. High-speed kinetic energy buffer: optimization of composite shell and magnetic bearings [ J ]. IEEE Transactions on Industrial Electronics, 2014,61 ( 6 ) : 3012-3021.
  • 9SUNGTH, HANYH, LEE JS, et al. Effect of a passive magnetic damper in a flywheel system with a hybrid superconductor bearing set [ J]. IEEE Transactions on Applied Superconductivity, 2003,13 (2) : 2165-2168.
  • 10SOTELO G G, ANDRADE R D, FERREIRA A C. Magnetic beating sets for a flywheel system [ J ]. IEEE Transactions on Applied Superconductivity, 2007,17(2) : 2150-2153.

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