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DC Voltage Controller for Asymmetric-Twin-Converter-Topology-Based High-Power STATCOM

机译:直流电压控制器,用于基于非对称双变换器拓扑的大功率STATCOM

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A four-level static compensator integrating two 2-level converters, supplying/absorbing reactive power to/from the grid, is reported in our earlier paper. Reduced component count, simpler layout for switches, and smaller dc-link capacitor values are the attractive features of the proposed topology over the diode clamped and cascaded multilevel converters. This paper suggests further improvements in this topology. Suitable selection of the dc-link voltage values reduces distortion in the current fed to the grid. In addition, circuit topology is modified to avoid the split-capacitor dc links. This reduces the number of independent dc capacitor voltages to be controlled and eliminates the flow of third-harmonic current through the transformer. In order to improve the performance, a phase-shifted carrier-based pulsewidth modulation technique is used. A mathematical model of the system is derived, based on which a controller for the scheme is designed. The effectiveness of the scheme is verified through detailed simulation study. To confirm the viability of the scheme, experimental studies are carried out on a scaled-down laboratory prototype developed for the purpose.
机译:我们早先的论文中报道了一个集成了两个2级转换器的四级静态补偿器,它们向/从电网供应/吸收无功功率。减少的组件数量,更简单的开关布局以及更小的直流链路电容器值,是所提出的拓扑在二极管钳位和级联多电平转换器上的吸引人之处。本文提出了对该拓扑的进一步改进。适当选择直流母线电压值可减少馈入电网的电流的失真。另外,修改了电路拓扑结构,以避免使用分流电容器直流链路。这减少了要控制的独立直流电容器电压的数量,并消除了通过变压器的三次谐波电流。为了提高性能,使用了基于相移载波的脉宽调制技术。推导系统的数学模型,基于该模型设计该方案的控制器。通过详细的仿真研究验证了该方案的有效性。为了确认该方案的可行性,在为此目的而开发的按比例缩小的实验室原型上进行了实验研究。

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