电力系统中有源滤波器的谐波抑制

E. Mudaheranwa, E. Ntagwirumugara, Delphin Bampire, Amuza Godfrey, R. Byiringiro, Augustin Munyaneza, G. Masengo, M. G. Berwa
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引用次数: 1

摘要

为了达到本研究的目的,作者使用Matlab软件对有源电力滤波器进行仿真。这项工作着眼于有源电力滤波器,它通常用于电力系统中,以减少谐波发生的数量。谐波电压或电流被定义为频率为基频整数倍的交流电流或电压。谐波通过与工业或商业设施中的电子通道相冲突,降低了该设施的功率有效性和生产率。谐波缓解装置是将失真波形的谐波分量的镜像波形注入变形波形中,从而降低其谐波含量的一种装置,波形是有源电力滤波器。有源电力滤波器,尽管是一个相对较新的和昂贵的技术,有一些主要的优点,应该彻底调查之前应用。利用Matlab/Simulink仿真工具对系统的运行进行了验证。在概述谐波失真困难以及这些问题对电能质量的影响之后,对有源电力滤波器和Matlab验证技术进行了更详细的探讨。研究结果表明,源电流总谐波失真从19.5%降至0%,首次符合IEEE STD. 519-1992谐波标准。
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Reduction of harmonics using Active Power Filters in Electric Power System
For the purposes of this study, the authors simulate an active power filter using Matlab software. The work looks at an active power filter, which is commonly used in electrical systems to decrease the quantity of harmonics occurring. Harmonic voltages or currents are defined as alternating currents or voltages with a frequency that is an integral multiple of the fundamental frequency. Harmonics degrade the degree of power effectiveness and productivity in an industrial or commercial facility by conflicting with the passage of electrons in that facility. Harmonic mitigation devices are a type of device that injects a mirror image waveform of the harmonic component of a distorted waveform, which is an active power filter, into the deformed waveform, thus lowering its harmonic content. Active power filters, despite being a relatively new and expensive technology, have a number of major advantages that should be thoroughly investigated before being applied. The operation of the system is verified using the Matlab/Simulink simulation tool. The active power filter and the Matlab verification technique are explored in greater detail after an overview of harmonic distortion difficulties and the repercussions of these issues for power quality. As a result of the study, the total harmonic distortion of the source current is decreased from 19.5 percent to 0 percent, allowing it to comply with the harmonic standard (IEEE STD. 519-1992) for the first time.
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