The Evaluation of Electric Power by Separate Analysis of Fourier Transform Components

I. Kostiukov
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Abstract

This paper presents a substantiation of an approach for the evaluation of components of apparent power and intended to simplify the computational procedures which usually should be implemented in order to process the preliminary sampled waveform of instantaneous power. The results of carried out studies have shown that both active and reactive power can be calculated by the analysis of calculated components of sine and cosine Fourier transforms. This paper also presents the discussion of restrictions, which should be imposed on the duration of the analyzed signal and on frequencies of the auxiliary trigonometric functions, which are applied in order to calculate components of Fourier transform which are used for the evaluation of active and reactive power. The compliance with these restrictions allows us to eliminate the undesirable bias of active and reactive power estimation caused by the refusal from the decomposition of the analyzed waveform of the instantaneous power by applying the complete system of orthogonal trigonometric functions, as the evaluation of components of the apparent power is attained based on separate analysis of sine and cosine Fourier transforms calculated for the analyzed signal. The results of carried out simulations illustrate the frequency dependencies of sine Fourier transform calculated for the case of compliance with the restrictions, which allow to attain the highest accuracy of estimation and for the case when the duration of analyzed signal does not fit these restrictions.
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用傅里叶变换分量的分离分析评价电功率
本文提出了一种计算视在功率分量的方法,旨在简化通常为处理瞬时功率的初步采样波形而需要执行的计算程序。进行研究的结果表明,有源和无功功率的分析可以计算正弦和余弦傅里叶变换的计算组件。本文还讨论了为计算用于评估有功和无功功率的傅里叶变换分量,应对被分析信号的持续时间和辅助三角函数的频率施加的限制。由于视在功率分量的评估是基于对被分析信号计算的正弦和余弦傅里叶变换的单独分析而获得的,遵守这些限制使我们能够通过应用完整的正交三角函数系统来消除由于对瞬时功率的分析波形的分解而导致的有功和无功功率估计的不良偏差。所进行的仿真结果说明了正弦傅里叶变换在符合这些限制的情况下计算的频率依赖关系,这允许获得最高的估计精度,以及分析信号持续时间不符合这些限制的情况。
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