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军用汽车混合电力驱动系统复合能源控制策略 被引量:3
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作者 田德文 谢大纲 崔淑梅 《机械工程学报》 EI CAS CSCD 北大核心 2009年第2期41-47,共7页
电池技术是制约军用汽车混合电力驱动技术发展的关键因素之一。目前,广泛使用的各种单一储能源都难以满足军用汽车对能量和峰值功率的双重要求。采用复合能源结构,将高比功率能源与高比能量能源复合使用,能在现有的技术条件下,大大提高... 电池技术是制约军用汽车混合电力驱动技术发展的关键因素之一。目前,广泛使用的各种单一储能源都难以满足军用汽车对能量和峰值功率的双重要求。采用复合能源结构,将高比功率能源与高比能量能源复合使用,能在现有的技术条件下,大大提高军用汽车能源系统的性能。为了充分发挥多种能源的优势,必须对复合能源功率分配进行合理控制。目前复合能源控制主要有加权法和滤波法,这两种方法各有侧重点,没有同时兼顾复合能源与发动机的特性。针对镍氢电池与超级电容的自身特性,提出一种加权控制和滤波器控制相结合的控制策略,首先细分复合能源控制模式,明确各个模式的切换条件,然后在具体的工作模式下采用滤波器控制,对复合能源输出功率进行分配。仿真分析和试验结果表明,超级电容起到了功率缓冲的作用,使得镍氢电池充放电过程得到了优化,避免了深充深放,复合能源的峰值功率大大提高。 展开更多
关键词 复合能源 控制策略 混合电力驱动
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HEV推进系统电机驱动选择的结果的对比研究
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作者 M. Zeraoulia D. Diallo 谷雨(译) 《传动技术》 2007年第2期28-35,48,共9页
本文阐述了一并联混合电力驱动车辆(HEV)最合理的电力推进系统的选择的对比研究。本文基于技术状况的慎密检查,并对比了4种主要电力推进即直流(dc)电机、感应(异步)电机(IM)、永磁同步电机和整流子电机的性能。经对比研究得出主要结论,... 本文阐述了一并联混合电力驱动车辆(HEV)最合理的电力推进系统的选择的对比研究。本文基于技术状况的慎密检查,并对比了4种主要电力推进即直流(dc)电机、感应(异步)电机(IM)、永磁同步电机和整流子电机的性能。经对比研究得出主要结论,推荐笼式IM能最好满足HEV电力推进的大多数要求。 展开更多
关键词 对比 电力推进 混合电力驱动车辆(HEV)
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Modern Multilevel Control Technique Used in Electric and Hybrid Drive System with Induction Motors
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作者 Zygmunt Szymanski 《Computer Technology and Application》 2012年第12期789-796,共8页
The mathematical model of the modem induction traction motor (TRIM and cutting magnetic circuit traction motor), supplied with IPM inverter with different control technique is presented in the paper. In electric and... The mathematical model of the modem induction traction motor (TRIM and cutting magnetic circuit traction motor), supplied with IPM inverter with different control technique is presented in the paper. In electric and hybrid vehicle are applied: FLMC (Fuzzy Logic Mode Control), SLMC (Sliding Mode Control), NRMC (Neural Regulator Control), and Direct Power and Torque Control for Space Vector Modulated inverter (DPTC SVM). In the special solution of the electric and hybrid vehicle are also applied a Random Switching Frequency Modulation. The control of hybrid vehicle should assure the realization of established transport-assignments in the definite time, at the optimum of energy consumption. One can this realize using. The multi criteria control system. Some results of the computer simulations are presented in the paper. Results of numerical calculation were verified for laboratory model of the electric and hybrid wheel vehicles traction motor. 展开更多
关键词 Induction motor multilevel control system hybrid drive system random control system.
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Electromechanical coupling driving control for single-shaft parallel hybrid powertrain 被引量:17
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作者 YANG Chao JIAO XiaoHong +3 位作者 LI Liang ZHANG YaHui ZHANG LiPeng SONG Jian 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第3期541-549,共9页
The single-shaft parallel hybrid powertrain with the automatic mechanical transmission(AMT)is an efficient hybrid driving system in the hybrid electric bus(HEB),while the electromechanical coupling driving control bec... The single-shaft parallel hybrid powertrain with the automatic mechanical transmission(AMT)is an efficient hybrid driving system in the hybrid electric bus(HEB),while the electromechanical coupling driving control becomes a complicated question to find a transient optimal control method to distribute the power between the engine and the electric machine(EM).This paper proposes an innovative control method to deal with the complicated transient coupling driving process of the electromechanical coupling driving system,considering the accelerating condition and the cruising condition mostly in the city driving cycle of HEB.The EM might be operated at driving mode or generating mode to assist the diesel engine to work in its high-efficiency area.Therefore,the adaptive torque tracking controller has been brought forward to ensure that the EM implements the demand torque as well as compensate the torque fluctuation of diesel engine.The d?q axis mathematical model and back stepping method are employed to deduce the adaptive controller and its adaptive laws.Simulation results demonstrate that the proposed control scheme can make the output torque of two power sources respond rapidly to the demand torque from the powertrain in the given driving condition.The proposed method could be adopted in the real control of HEB to improve the efficiency of the hybrid driving system. 展开更多
关键词 single-shaft parallel hybrid powertrain coupling driving control adaptive control torque tracking
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