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Electric Automobile Ni-MH Battery Investigation in diverse situations

机译:电气汽车镍氢电池调查在不同情况下

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The electronic differential system ensures the robust control of the vehicle comportment on the road. This paper focuses Ni-MH Battery controlled by Buck Boost DC-DC converter power supply for EV. Sliding mode control based on space vector modulation (SVM-SMC) is proposed to achieve the tow rear driving wheel control. The performances of the proposed strategy controller give a satisfactory simulation results. The proposed control law increases the utility EV autonomous under several speed variations. Moreover, the future industrial's vehicle must take into considerations the battery material choice into design steps. The battery material model choice is a crucial item, and thanks to an increasing emphasis on vehicle range and performance, the Ni-MH battery could become a viable candidate that's our proposal battery model in the present work , in this way the present paper show a novel strategy of electric automobile (EA) power electronics studies when the current battery take into account the impact of the sliding mode control based onspace vector machine technique in the several speed variations using the primitive battery SOC of 60% state.
机译:电子差动系统可确保对道路上的车辆展示的强大控制。本文重点介绍了EV的降压升压DC-DC转换器电源的NI-MH电池。提出了基于空间向量调制(SVM-SMC)的滑模控制以实现牵引后驱动轮控制。所提出的策略控制器的性能呈现出令人满意的仿真结果。拟议的控制法在几种速度变化下增加了实用程序。此外,未来的工业车辆必须考虑到电池材料选择的设计步骤。电池材料模型选择是一个关键的项目,并且由于增加了车辆范围和性能的强调,Ni-MH电池可能成为当前工作中的提案电池型号的可行候选者,以这种方式显示了电动汽车(EA)电力电子研究策略研究当前电池考虑了基于滑模控制的INSPACE控制机技术的影响,使用60%的原始电池SOC在几种速度变化中的几个速度变化。

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