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Analysis of resonance problems and harmonic filter design in power factor correction capacitor applications

机译:功率因数校正电容器应用中的谐振问题分析和谐波滤波器设计

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Increased use of power electronic control equipment has made it necessary to pay greater attention to harmonic voltages and currents in power systems. In power systems containing harmonic-producing equipment, application of power factor-correcting capacitors may lead to a resonance condition between the inductive reactance of the source and the capacitive reactance of the capacitor bank. If the resonance frequency occurs at or near a harmonic current produced by the load, severe voltage distortion and harmonic current amplification will occur. Very often, the increase in harmonic current is large enough to cause nuisance fuse blowing, breaker tripping and overheating of equipment. The paper begins with a review of the nature of harmonic currents and voltages and common sources of harmonic-producing equipment. This will be followed by the presentation of results generated from the software developed by the authors combining the strengths of Mathcad and Excel spreadsheet. The output from the program are the parallel resonant frequencies and the resulting voltage distortion due to harmonic-producing loads. In addition, the program also determines the value of the series inductor in the harmonic filter bank that would shift the parallel resonant frequency to a value less than the lowest-order harmonic term of the load. Also computed are the bus voltage distortion and filter harmonic duty. Work is in progress to extend the scope of the software from traditional passive filters to active filters.
机译:越来越多地使用电力电子控制设备,因此必须更加注意电力系统中的谐波电压和电流。在包含产生谐波的设备的电源系统中,使用功率因数校正电容器可能会导致电源的感抗与电容器组的容抗之间产生谐振状态。如果谐振频率出现在负载产生的谐波电流或其附近,则会发生严重的电压失真和谐波电流放大。通常,谐波电流的增加足够大,足以引起讨厌的保险丝熔断,断路器跳闸和设备过热。本文首先回顾了谐波电流和电压的性质以及谐波产生设备的常见来源。接下来将介绍作者结合Mathcad和Excel电子表格的优势开发的软件所产生的结果。该程序的输出是并联谐振频率以及由于产生谐波的负载而导致的电压失真。此外,该程序还确定谐波滤波器组中的串联电感器的值,该值将使并联谐振频率偏移到小于负载的最低阶谐波项的值。还计算了母线电压失真和滤波器谐波占空比。正在进行将软件范围从传统的无源滤波器扩展到有源滤波器的工作。

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