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Hybrid railway power quality conditioner for high-capacity traction substation with auto-tuned DC-link controller

机译:具有自动调整的直流母线控制器的大容量牵引变电所的混合铁路电能质量调节器

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摘要

Power quality was always a major concern in designing an electric supply system for railways. Since electric railcars are usually single-phase loads, they draw high amounts of negative sequence component of currents, in addition to harmonic contents and transient currents. Therefore, many compensation methods were examined to improve the power quality indices. The active power quality conditioner (APQC) can be considered as an ideal compensator for high-speed railway, which contains a three-phase converter connected to the traction substation through a step-down transformer. However, with the growth of railway loads, the nominal rating of the solid-state high-frequency switches of APQC increases seriously, which in turn, results in an exponential growth of the cost of power-electronic switches. Therefore, for a very high-capacity railway system, it is not economic to apply an APQC. As a solution, a combination of APQC with the static VAr compensator is proposed in this study, which reduces the rating of APQC, and improves the power quality of the system. Simulation results validate the pre-defined hypothesis. Moreover, the performance of APQC depends on the DC-link operation, for which genetic-algorithm optimisation has been applied to obtain an optimum design of a stable DC-link voltage.
机译:电能质量一直是设计铁路供电系统的主要问题。由于电动有轨电车通常是单相负载,因此除了谐波含量和瞬态电流外,它们还会吸收大量的电流负序分量。因此,研究了许多补偿方法以改善电能质量指标。有源电能质量调节器(APQC)可以被认为是高速铁路的理想补偿器,它包含一个通过降压变压器连接到牵引变电站的三相转换器。然而,随着铁路负荷的增长,APQC固态高频开关的标称额定值严重增加,这反过来导致电力电子开关成本成指数增长。因此,对于容量非常大的铁路系统,应用APQC并不经济。作为解决方案,本研究提出了将APQC与静态VAr补偿器组合使用,从而降低了APQC的额定值,并改善了系统的电能质量。仿真结果验证了预定义的假设。此外,APQC的性能取决于直流母线操作,为此对其进行了遗传算法优化以获得稳定的直流母线电压的最佳设计。

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