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A combined system of APF and SVC for power quality improvement in microgrid

机译:APF和SVC的组合系统可改善微电网的电能质量

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Among the factors influencing power quality of microgrid, harmonic current brought by power electronic devices and load with considerable reactive power demand are the most significant. This paper introduces a combined system of Active Power Filter (APF) and Static Var Compensator (SVC) to improve power quality of microgrid. In the combined system, APF, installed at the outlet of the micro source inverter, mitigates harmonic current. Its current detection method is ip-iq, and tracking method is Deadbeat Control and Space Vector Pulse Width Modulation (SVPWM); SVC, which is set near the load of microgrid, comprising Thyristor Controlled Reactor (TCR) and Thyristor Switched Capacitor (TSC), supplies reactive power, relives voltage variation, and reduces power loss on the transmission lines. As for SVC, we adopt closed-loop control and use Proportional-Integral (PI) method to regulate the compensatory susceptance, and then find the corresponding trigger angle in a given table. APF and SVC, performing respectively, improve the power quality of microgrid together. Simulation results show the effectiveness of the combined system later in this paper.
机译:在影响微电网电能质量的因素中,电力电子设备和具有相当大无功功率需求的负载带来的谐波电流最为重要。本文介绍了一种有源电力滤波器(APF)和静态无功补偿器(SVC)的组合系统,以提高微电网的电能质量。在组合系统中,安装在微源逆变器出口处的APF可减轻谐波电流。它的当前检测方法是ip-iq,跟踪方法是无差拍控制和空间矢量脉冲宽度调制(SVPWM); SVC设置在微电网负载附近,由晶闸管控制电抗器(TCR)和晶闸管开关电容器(TSC)组成,可提供无功功率,减轻电压变化并减少传输线上的功率损耗。对于SVC,我们采用闭环控制并使用比例积分(PI)方法来调节补偿电纳,然后在给定表中找到相应的触发角。分别执行的APF和SVC一起改善了微电网的电能质量。仿真结果证明了该组合系统的有效性。

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