基于开关谐振L-C的EV永磁同步电机电压控制以实现能量回收率最大化

Keonho Park, Sungchul Jung, Seungtaik Kim, Jongsun Ko
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引用次数: 3

摘要

本文研究了通过控制电动汽车再生制动时产生的电压来提高能量回收率的方法。该方法包括L-C谐振电路和使电池可充电的电压控制。这样,就有可能增加能量回收,最终增加电动汽车的行驶距离。采用PI和逆PI占空控制器对谐振电路的电压进行了分析。与以往的研究仅通过仿真验证电压控制算法不同,本文通过M-G集的实验验证了控制算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generated Voltage Control of EV PMSM for Maximizing Energy Recovery Rate using Switched Resonant L-C
In this paper, we study the method of increasing the energy recovery rate by controlling the voltage which generated by the electric vehicle at the regenerative braking. The method includes an L-C resonance circuit and voltage control to make the battery chargeable. Thus, it is possible to increase the energy recovery and eventually increases the travel distance of the EV. The voltage of the resonant circuit is analyzed using a proposed algorithm with PI and reverse-PI duty controller. Unlike the previous studies have verified the voltage control algorithm only through the simulation, the control algorithm was verified through the experiment using M-G set.
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