A novel SIMIDCBC topology driven PMSM for PEV application

Chinta Anil Kumar, Kandasamy Jothinathan, Lingineni Shanmukha Rao
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Abstract

Nowadays, the usage of renewable energy based electric vehicles is increased for reducing CO2 emissions, usage of fossil fuels, energy saving, and transportation cost. As a result, it becomes the most significantly run with combined energy sources and it is good choice which minimizes the energy consumption from charging stations. The available renewable energy is integrated to power-train through power-electronic interface; such interface consists of three-phase inverter with DC-DC boost converter. The combined energy sources like solar-PV/battery are integrated to power-train by employing multi-input non-isolated step-up DC-DC converter for providing continuous power to drive the vehicle. The multi-terminal topologies have efficient, reliable performance, continuous input current, high step-up gain over the conventional DC-DC converters. In this work, a unique framework of combined energy powered switched-inductor based multi-input DC boost converter topology has been proposed to drive the PMSM. The performance of proposed SIMIDCBC topology driven PMSM for PEV application under constant and variable speed conditions are verified by using MATLAB/Simulink tool, simulation results are presented.
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用于 PEV 应用的新型 SIMIDCBC 拓扑驱动 PMSM
如今,为了减少二氧化碳排放、化石燃料的使用、节约能源和运输成本,以可再生能源为基础的电动汽车的使用越来越多。因此,使用组合能源的电动汽车最受欢迎,也是将充电站能耗降至最低的最佳选择。可用的可再生能源通过电力电子接口整合到动力传动系统中;这种接口包括带有直流-直流升压转换器的三相逆变器。太阳能-光伏/电池等组合能源通过多输入非隔离升压直流-直流转换器集成到动力传动系统中,为车辆提供持续动力。与传统的直流-直流转换器相比,多终端拓扑结构具有高效、可靠的性能、持续的输入电流和较高的升压增益。在这项工作中,提出了一种独特的基于多输入直流升压转换器拓扑结构的组合能源供电开关电感框架,用于驱动 PMSM。通过使用 MATLAB/Simulink 工具验证了所提出的 SIMIDCBC 拓扑驱动的 PMSM 在恒速和变速条件下在 PEV 应用中的性能,并给出了仿真结果。
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