Supercapacitor state of charge control based on changeover finite state controller for metro-train applications

D. Iannuzzi, P. Tricoli
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引用次数: 8

Abstract

The paper deals with the control of onboard storage devices with supercapacitors for urban railway trains. The practical utilization of supercapacitors requires suitable power converters for the regulation of power flows between the catenary and the electrical drives of the power-train. These converters operate in DC current and have to be bi-directional in order to allow the charge and discharge of supercapacitors. The mathematical model of the whole electrical drive has been developed and the main features of the control strategy have been presented. The control is capable of limiting the peak currents of the contact line and recovering partially the kinetic energy of the train during the braking periods. Simulations prove that the suggested control strategy is very effective for both purposes. Experimental tests made on a scaled prototype, representing the translating masses of a train, fully confirm the results of the simulations.
基于转换有限状态控制器的地铁列车超级电容充电状态控制
本文研究了城市轨道列车用超级电容器车载存储装置的控制问题。超级电容器的实际应用需要合适的功率转换器来调节悬链线和动力传动系统之间的功率流。这些转换器在直流电流下工作,并且必须是双向的,以便允许超级电容器的充放电。建立了整个电传动的数学模型,给出了控制策略的主要特点。该控制能够限制接触线的峰值电流,并在制动期间部分恢复列车的动能。仿真结果表明,所提出的控制策略在两方面都是非常有效的。在代表火车平移质量的比例原型上进行的实验测试充分证实了模拟结果。
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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