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MMC-Based SRM Drives With Decentralized Battery Energy Storage System for Hybrid Electric Vehicles

机译:基于MMC的SRM驱动器,带有用于混合动力电动汽车的分散式电池储能系统

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摘要

This paper proposes a modular multilevel converter (MMC) based switched reluctance motor (SRM) drive with decentralized battery energy storage system for hybrid electric vehicle applications. In the proposed drive, a battery cell and a half-bridge converter is connected as a submodule (SM), and multiple SMs are connected together for the MMC. The modular full-bridge converter is employed to drive the motor. Flexible charging and discharging functions for each SM are obtained by controlling switches in SMs. Multiple working modes and functions are achieved. Compared to conventional and existing SRM drives, there are several advantages for the proposed topology. A lower dc-bus voltage can be flexibly achieved by selecting SM operation states, which can dramatically reduce the voltage stress on the switches. Multilevel phase voltage is obtained to improve the torque capability. Battery state-of-charge balance can be achieved by independently controlling each SM. Flexible fault-tolerance ability for battery cells is equipped. The battery can be flexibly charged under both running and standstill conditions. Furthermore, a completely modular structure is achieved by using standard half-bridge modules, which is beneficial for market mass production. Experiments carried out on a three-phase 12/8 SRM confirm the effectiveness of the proposed SRM drive.
机译:本文提出了一种基于模块化多电平转换器(MMC)的开关磁阻电动机(SRM)驱动器,该驱动器具有用于混合动力电动汽车应用的分散式电池储能系统。在建议的驱动器中,电池单元和半桥转换器作为子模块(SM)连接,并且多个SM连接在一起以用于MMC。模块化全桥转换器用于驱动电动机。通过控制SM中的开关,可以为每个SM提供灵活的充电和放电功能。实现了多种工作模式和功能。与常规SRM驱动器和现有SRM驱动器相比,建议的拓扑具有多个优点。通过选择SM工作状态,可以灵活地实现较低的直流总线电压,这可以显着降低开关上的电压应力。获得多级相电压以提高转矩能力。电池电量状态平衡可以通过独立控制每个SM来实现。具有灵活的电池容错能力。电池可以在运行和静止状态下灵活充电。此外,通过使用标准的半桥模块可以实现完全模块化的结构,这有利于市场的批量生产。在三相12/8 SRM上进行的实验证实了所建议的SRM驱动器的有效性。

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