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首页> 外文期刊>Electric Power Applications, IET >Bidirectional multiport solar-assisted SRM drive for pure electric vehicle applications with versatile driving and autonomous charging capabilities
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Bidirectional multiport solar-assisted SRM drive for pure electric vehicle applications with versatile driving and autonomous charging capabilities

机译:双向多端口太阳能辅助SRM驱动器,用于纯电动汽车应用,具有多功能驾驶和自主充电功能

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摘要

Pure electric vehicles (PEVs) offer a solution for achieving a zero-emission transport system. This study presents the work towards the development of a bi-directional multiport solar-assisted switched reluctance motor (SRM) drive for PEV applications having battery-to-vehicle (B2V), photovoltaic (PV)-to-vehicle (PV2V), PV assisted B2V, grid-to-vehicle battery charging and PV2V battery charging functions. The power circuit is formed by the combination of a front-end circuit and a modified-Miller SRM converter. Battery, PV panel, grid and SRM form the four ports of this multiport drive, which with proper control, provide motoring, braking and charging functions. The dc-link voltage is fully controllable which improves the machine performance both at higher and lower speeds. During stand-still conditions, the battery is charged either from the grid at unity power factor or through the PV panel by incorporating the drive components to form an on-board battery charger, thereby reducing the reliance on charging stations. A fault-tolerant control is developed to operate the system with desired performance under single and double phase open-circuit faults. An 8/6 SRM is used for proof of concept and the experimental results confirm the effectiveness of the proposed drive and control strategy.
机译:纯电动车(PEVS)提供了实现零排放传输系统的解决方案。本研究提出了开发双向多端口太阳能辅助开关磁阻电动机(SRM)驱动器的工作,用于具有电池到车辆(B2V),光伏(PV) - 车辆(PV2V),PV辅助B2V,电网电池充电和PV2V电池充电功能。电源电路通过前端电路和改进的铣削磨机转换器的组合形成。电池,光伏面板,电网和SRM形成该多端口驱动器的四个端口,可控制,提供电动,制动和充电功能。直流链路电压是完全可控的,这在较高且较低的速度下改善了机器性能。在静止条件下,通过结合驱动部件以形成板载电池充电器,通过统一功率因数或通过PV面板从电池收取电池,从而降低对充电站的依赖。开发出容错控制以在单相和双相开路故障下操作具有所需性能的系统。 8/6 SRM用于概念证明,实验结果证实了所提出的驱动和控制策略的有效性。

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