Multi-Functional Converter with Integrated Motor Control, Battery Charging and Active Module Balancing for Electric Vehicular Application

L. Mathe, E. Schaltz, R. Teodorescu, Marcos Rejas Haddioui
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引用次数: 5

Abstract

In order to reduce the fuel consumption and the acoustical noise generated by refuse lorries, electrification of the waste compactor unit is a very promising solution. For the electrical energy storage Lithium-Sulfur (Li-S) battery technology has been selected with potential for reducing the cost, weight and volume in comparison with other Li-Ion based chemistries. The control of the energy flow has been done through a Modular Multilevel Converter (MMC), which has demonstrated advantages over 2 level converters in terms of efficiency, fault tolerant operation, flexible operation modes. It has been used successfully in HVDC/FACTS and large drive applications. In this paper the use of MMC for a battery driven waste compactor unit addressed with integrated functionality including: motor driver, battery charge and active balancing is presented. The challenges addressed here are related to the design of control strategy and current ripple reduction through the battery for life time extension.
集电机控制、电池充电和主动模块平衡于一体的电动汽车多功能变换器
为了减少燃料消耗和垃圾卡车产生的噪音,废物压实装置的电气化是一个非常有前途的解决方案。与其他基于锂离子的化学物质相比,锂硫(li -硫)电池技术具有降低成本、重量和体积的潜力。能量流的控制是通过模块化多电平变换器(MMC)完成的,该变换器在效率、容错运行、灵活运行模式等方面都优于2电平变换器。它已成功应用于HVDC/FACTS和大型驱动器应用中。本文介绍了MMC在电池驱动的垃圾压实装置中的应用,该装置具有电机驱动、电池充电和主动平衡等综合功能。这里解决的挑战与控制策略的设计和通过电池延长寿命的电流纹波减小有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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