用补偿方法改善电力电子系统的功率因数

N. Venkateswarlu, M. Velmurugan, J. Suresh
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引用次数: 1

摘要

电力电子系统是非线性系统,它消耗更多的无功功率,而且它们馈送的负载大多是感应负载,这导致功率因数较差。各种补偿技术可以使功率因数更接近于统一。本文提出了一种新颖的补偿器,其中电源电流的同相分量和正交分量由矢量控制。在功率因数非常差(因此THD很高)的电力电子系统中实现该补偿器,表明系统随后会吸取超前电流。对采用静态无功补偿器的传统电力电子系统和采用该补偿器的传统电力电子系统进行了仿真,得到了仿真结果。结果表明,该方法仅提供0.7%的THD,这也意味着功率因数得到了改善。
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Improvement of power factor in power electronic systems by using a method of compensation
Power electronics systems are non-linear systems, which consume more reactive power and also the loads they feed are mostly inductive loads which leads to a poor power factor. Various compensation techniques are available to bring the power factor nearer to unity. In this paper, a novel compensator is proposed, where in-phase and quadrature components of the supply current are vector-controlled. Implementation of this compensator in a power electronic system operating with a very poor power factor (and hence high THD), shows that the system then draws a leading current. A conventional power electronic system with one of the traditional static VAR compensators and the conventional power electronic system incorporated with the proposed compensator are simulated and the simulation results are obtained. It is shown that the proposed method offers only 0.7% THD, which also implies that the power factor is improved.
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