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X-Type Current Source Converters

机译:X型电流源转换器

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In this article, a novel topology generalization of a current source converter (CSC) that allows controlling of multiple single-phase ac converters independently sharing the same dc-bus, with the advantage of having a reduced number of conducting switches and a lower dc-bus current, is presented. A conventional n-output/port single-phase CSC that uses the same dc-bus needs to have n H-bridge converters connected in series, which means that it always has 2n conducting switches. The new topology allows generating any n ac output currents always having only (n + 1) conducting switches in a switching period. This represents (1 - 1/n). 50% less conduction losses when compared with the equivalent conventional multiport single-phase CSC. A scalar pulsewidth modulation to control the converters with switching optimization and its generalization is also presented. Details of topology, control strategy, and modulation are presented. Simulation and experimental results are provided to validate the theoretical approach.
机译:在本文中,允许控制多相交流转换器的电流源转换器(CSC)的新颖拓扑概括,其具有减少数量的导电开关和较低的DC-的优点总线电流显示。使用相同的直流总线的传统N输出/端口单相CSC需要串联连接的N H桥转换器,这意味着它始终具有2N导电开关。新拓扑允许在切换时段中产生始终仅具有(n + 1)开关的任何N个AC输出电流。这代表(1 - 1 / n)。与等效传统多端单相CSC相比,导通损耗减少50%。还提出了一个标量脉冲WIDTH调制,以控制具有切换优化的转换器及其泛化。介绍了拓扑,控制策略和调制的细节。提供了仿真和实验结果以验证理论方法。

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