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New Topologies for Static Reactive Power Compensator Based on PWM AC Choppers

机译:基于PWM交流斩波器的静态无功补偿器的新拓扑

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摘要

Nowadays, static reactive power control is widely used in electrical power networks. The former solution based on Thyristor Controlled Reactors is progressively replaced by PWM Voltage Source Inverters. The first solution is quite simple but requires bulky shunt passive filters whereas the second solution shows higher semiconductor losses and requires a significant cooling system. In this paper, the authors present new topologies which show a good compromise in comparison to the classical solutions. Single phase AC Choppers are used to achieve controlled impedances (capacitive or inductive) at the fundamental frequency and thus adjust the reactive power level. This concept is applied for medium or high power applications and multi-converter structures based on step down or step up AC choppers are proposed. An example of design concerning reactive power compensation in a 25 kV/50 Hz AC traction line is presented. Finally, experimental results obtained for a 1.2 MVAR prototype demonstrate the feasibility of these novel topologies.
机译:如今,静态无功功率控制已广泛用于电力网络中。基于晶闸管控制电抗器的前一种解决方案逐渐被PWM电压源逆变器取代。第一种解决方案非常简单,但是需要笨重的并联无源滤波器,而第二种解决方案则显示出更高的半导体损耗,并且需要大量的冷却系统。在本文中,作者提出了新的拓扑,与传统的解决方案相比,这些拓扑显示出很好的折衷。单相交流斩波器用于在基频上实现受控阻抗(电容性或电感性),从而调节无功功率水平。该概念适用于中功率或高功率应用,并提出了基于降压或升压交流斩波器的多转换器结构。给出了有关25 kV / 50 Hz交流牵引线中无功补偿的设计示例。最后,从1.2 MVAR原型获得的实验结果证明了这些新颖拓扑的可行性。

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