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A new approach to an individual-phase reactive power compensator for nonsinusoidal and unbalanced three-phase systems

机译:非正弦和不平衡三相系统单相无功补偿器的新方法

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摘要

Many researchers have attempted to clarify the definitions of active power, reactive power, active current, reactive current, etc. for unbalanced and nonsinusoidal three-phase situations. The so-called pq theory has given a new definition of instantaneous reactive power, and it has been discussed and developed by many authors. In this paper, the merits and demerits of the instantaneous reactive power compensator are discussed. It is shown theoretically that applying instantaneous reactive power compensation to unbalanced three-phase systems has a serious disadvantage in that it causes third-order harmonic currents on the source side, which problem cannot be avoided. To overcome this problem the authors propose a new approach, and name it the "quasi-instantaneous" reactive power compensator. It compensates individual-phase reactive currents. The basic principles of the quasi-instantaneous reactive current compensator are discussed in detail, and its validity is confirmed using digital simulation. In particular the authors show that the power factor of each phase becomes unity on the source side, but the source currents remain unbalanced when the proposed method is applied.
机译:许多研究人员试图澄清不平衡和非正弦三相情况的有功功率,无功功率,有功电流,无功电流等的定义。所谓的pq理论给出了瞬时无功功率的新定义,许多作者对此进行了讨论和开发。本文讨论了瞬时无功补偿器的优缺点。从理论上可以看出,将瞬时无功功率补偿应用于不平衡的三相系统具有严重的缺点,因为它会在源侧产生三阶谐波电流,这是无法避免的问题。为了克服这个问题,作者提出了一种新方法,并将其命名为“准瞬时”无功功率补偿器。它补偿了单相无功电流。详细讨论了准瞬时无功电流补偿器的基本原理,并通过数字仿真验证了其有效性。特别是,作者表明,每个相的功率因数在源极侧变得统一,但是当应用所提出的方法时,源极电流保持不平衡。

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