p-q理论功率元件计算

J. Afonso, M. Freitas, J. S. Martins
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引用次数: 111

摘要

Akagi等人提出的“三相电路瞬时无功功率的广义理论”,也被称为p-q理论,是一个有趣的工具,可以应用于有源电力滤波器的控制,甚至分析三相电力系统,以检测与谐波、无功功率和不平衡有关的问题。本文将表明,在三相电力系统中,当电力系统基频的1/ 6,1 /3,1/2或1个周期时,瞬时功率波形呈现对称性,这取决于系统是否平衡,以及是否有谐波(本分析中不考虑间谐波和次谐波)。这些对称性可以用来加速基于p-q理论的有源滤波器控制器的计算。在常规无功补偿或零序补偿的情况下,理论控制系统的动态响应延迟为零。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
p-q Theory power components calculations
The "generalized theory of the instantaneous reactive power in three-phase circuits", proposed by Akagi et al., and also known as the p-q theory, is an interesting tool to apply to the control of active power filters, or even to analyze three-phase power system in order to detect problems related to harmonics, reactive power and unbalance. In this paper it will be shown that in three phase electrical systems the instantaneous power waveform presents symmetries if 1/6, 1/3, 1/2 or 1 cycle of the power system fundamental frequency, depending on the system being balanced or not, and having or not even harmonics (interharmonics and subharmonics are not considered in this analysis). These symmetries can be exploited to accelerate the calculations for active filters controllers based on the p-q theory. In the case of the conventional reactive power or zero-sequence compensation, it is shown that the theoretical control system dynamic response delay is zero.
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