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P-Q theory based Shunt Active Power Filter for power quality under ideal and non-ideal grid voltage conditions

机译:基于P-Q理论的并联有源功率滤波器,用于理想和非理想电网电压条件下的电能质量

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Power quality deterioration due to the increased use of power electronic switching devices has become a major problem faced by electrical engineers. Various power conditioning devices such as FACTS devices are developed for power quality improvement. Among them Shunt Active Power Filter (SAPF) is used for harmonic current compensation. SAPF supplies the reactive power required by the nonlinear load and maintains the power quality at source side. Performance of SAPF is at its best during ideal grid voltages. When the grid voltage is distorted with harmonics the THD reduction using SAPF is poor. In this paper performance of a p-q theory based SAPF is analyzed. Then a new improved control with p-q theory is used to improve the performance of SAPF during non ideal grid voltage conditions and the results are compared.
机译:由于越来越多地使用电力电子开关设备而导致的电力质量下降已经成为电气工程师面临的主要问题。为了改善电能质量,开发了各种功率调节设备,例如FACTS设备。其中,并联有源功率滤波器(SAPF)用于谐波电流补偿。 SAPF提供非线性负载所需的无功功率,并在电源侧保持电能质量。在理想的电网电压下,SAPF的性能处于最佳状态。当电网电压因谐波而失真时,使用SAPF的THD降低效果很差。本文分析了基于p-q理论的SAPF的性能。然后使用新的基于p-q理论的改进控制来改善非理想电网电压条件下SAPF的性能,并对结果进行比较。

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