Selection of Design Parameters to Reduce the Zero-Sequence Circulating Current Flow in Parallel Operation of DC Linked Multiple Shunt APF Units

S. Khadem, M. Basu, M. Conlon
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引用次数: 2

Abstract

Capacity enhancement and operational flexibility are two of the important limitations of the centralized shunt APF () unit. These limitations can be conquered by the operation of multiple APF units in parallel and connected back to back by a common DC link capacitor. In that case, a circulating current (CC) flows within the units. This CC flow becomes out of control when the units operate in hysteresis based current controlled mode. One of the difficulties of this CC flow control or reduction is the variable switching frequency of the units. In this paper, the model for CC flow is derived by the switching dynamics study of the units. It is found that the selection of design parameters plays an important role in the amount of CC flow. Detailed simulation, analysis, and real-time performance show how the selection of design parameters affects the CC flow and the reduction of CC flow can also be achieved at an acceptable level by the proper selection of design parameters.
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减小直流并联并联APF机组并联运行零序循环电流的设计参数选择
容量增强和操作灵活性是集中式并联APF()机组的两个重要限制。这些限制可以通过并联多个APF单元并通过一个公共直流链路电容器背靠背连接来克服。在这种情况下,循环电流(CC)在单元内流动。当单元在基于磁滞的电流控制模式下运行时,这种CC流变得失控。这种CC流量控制或减少的困难之一是机组的开关频率可变。本文通过对机组切换动力学的研究,建立了CC流模型。研究发现,设计参数的选择对连铸流量有重要影响。详细的仿真、分析和实时性能显示了设计参数的选择如何影响CC流量,并且通过适当的设计参数选择也可以在可接受的水平上实现CC流量的减少。
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