A loop cancellation based active damping solution for constant power instability in vehicular power systems

X. Zhang, D. Vilathgamuwa, K. Tseng, B. Bhangu, G. Chandana
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引用次数: 3

Abstract

In recent years, electric propulsion systems have increasingly been used in land, sea and air vehicles. The vehicular power systems are usually loaded with tightly regulated power electronic converters which tend to draw constant power. Since the constant power loads (CPLs) impose negative incremental resistance characteristics on the feeder system, they pose a potential threat to the stability of vehicular power systems. This effect becomes more significant in the presence of distribution lines between source and load in large vehicular power systems such as electric ships and more electric aircrafts. System transients such as sudden drop of converter side loads or increase of constant power requirement can cause complete system instability. Most of the existing research work focuses on the modeling and stabilization of DC vehicular power systems with CPLs. Only a few solutions are proposed to stabilize AC vehicular power systems with non-negligible distribution lines and CPLs. Therefore, this paper proposes a novel loop cancellation technique to eliminate constant power instability in AC vehicular power systems with a theoretically unbounded system stability region. Analysis is carried out on system stability with the proposed method and simulation results are presented to validate its effectiveness.
基于环路抵消的车辆电力系统恒功率不稳定主动阻尼解决方案
近年来,电力推进系统越来越多地应用于陆地、海上和空中交通工具。车辆动力系统通常装有严格调节的电力电子转换器,这些转换器往往需要恒定的功率。由于恒功率负载对馈线系统施加了负增量电阻特性,对车用电力系统的稳定性构成了潜在威胁。在大型车辆电力系统(如电动船舶和更多的电动飞机)中,在电源和负载之间存在配电线路时,这种影响变得更加明显。系统暂态,如变流器侧负荷的突然下降或恒功率需求的增加,都可能导致系统完全不稳定。现有的研究工作大多集中在带CPLs的车载直流电源系统的建模和稳定问题上。仅提出了几种具有不可忽略配电线路和cpl的交流车载电源系统的稳定解决方案。因此,本文提出了一种新的环路抵消技术,以消除具有理论上无界系统稳定区域的交流车辆电力系统的恒定功率不稳定性。利用该方法对系统进行了稳定性分析,并给出了仿真结果,验证了该方法的有效性。
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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