工业中谐波失真程度的影响分析与评价

M. Riaz, Muhammad Muneeb Afzal, Sheikh Muhammad Aaqib, Haider Ali
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引用次数: 14

摘要

由于使用越来越多的电子设备,电能质量是电力工程师日益关注的问题。电能质量恶化的主要原因是谐波水平高。工业中的谐波故障有许多来源,主要是变频驱动器和整流负载。谐波产生各种不必要的影响;因此,必须识别谐波畸变,识别与谐波有关的所有影响,并使用可用于可靠电力系统运行的工具和设备来分析电力系统质量。在本研究中,将使用Fluke能量分析仪在工业中进行谐波分析。测量得到的电压和电流的THD值将通过ETAP软件进行仿真,对纺织厂整个三相配电系统的总体谐波进行建模和分析。在ETAP软件中给出了一个模型,以证明所提出的技术同时用于谐波降低和功率因数校正(PFC)的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and Evaluating the Effect of Harmonic Distortion Levels in Industry
Power Quality is an escalating concern for power engineers since the use of increased electronic devices. The primary reason for deteriorating Power Quality is high levels of Harmonics. Harmonic glitches in the industry are produced from numerous sources, mainly Variable Frequency Drives and Rectified Loads. Harmonics produce various unwanted effects; consequently, it is imperative to identify harmonic distortions, recognize all effects pertaining to harmonics, and analysis of power system quality with tools and equipment that are available for reliable power system operation. In this study, the harmonic analysis will be presented in Industry using Fluke Energy Analyzer. The measured THD values for the Voltage and current will be used to model and analyze overall harmonics in the complete three-phase distribution system of Textile Plant through simulation using ETAP software. A model in ETAP software is presented to demonstrate the applicability of the proposed techniques for harmonics reduction and Power factor correction (PFC) at the same time.
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