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Bidirectional power flow control for battery super capacitor hybrid energy system for electric vehicles with in-wheel motors

机译:轮毂电机电动汽车电池超级电容器混合能源系统的双向潮流控制

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摘要

In order to improve the performance of electric vehicles (EV), in-wheel motors (IWM) system can be equipped to EV. Super capacitors (SC), and batteries are combined as hybrid energy storage system (HESS), aiming to realize both high energy density and high power density for the energy system. In this paper, bidirectional power flow control strategy for HESS to power the in-wheel motor system is presented. The aim of the energy sharing based on bidirectional power flow control of HESS is to satisfy the power requirement from highperformance in-wheel motor system, also for the energy recovery when motor brakes. The topologies of the converters, especially for different SC modules connection in different power classes, are analyzed in detail. The current control method for bidirectional non-isolated converters is applied to realize the power flow arrangement. Reduced-scale experiment platform test and experiment results show the effectiveness of the power control method.
机译:为了提高电动汽车(EV)的性能,可以为EV配备轮毂电机(IWM)系统。超级电容器(SC)和电池组合为混合储能系统(HESS),旨在为能源系统实现高能量密度和高功率密度。本文提出了用于HESS的轮毂电机系统双向功率流控制策略。基于HESS双向功率流控制的能量共享的目的是为了满足高性能轮毂电机系统的功率需求,同时还满足电机制动时的能量回收需求。详细分析了转换器的拓扑,尤其是针对不同功率级别的不同SC模块连接的拓扑。采用双向非隔离变换器的电流控制方法来实现潮流设计。缩小规模的实验平台测试和实验结果表明了功率控制方法的有效性。

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