Design and control of a single-phase voltage compensator based on an AC Chopper

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY
Giang Le Ngoc
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引用次数: 1

Abstract

Introduction: This paper is the result of the research “Design and control of single phase voltage compensator based on AC Chopper” developed in the AD-AF Academy of Viet Nam in 2019. Problem: This article develops power electronic devices based on AC chopper and provides solution for the voltage sag which is long-lasting and deep amplitude of fading at rural power grid. Objective: Improve the quality of the electricity system in rural Vietnam. Methodology: With the improvement of power system, power quality has become the major concern of user and grid companies. The Voltage sag has turned into the research priority because of the most frequently happening and great economic loss. Based on the rounded analysis of traditional voltage compensation devices, this article develops power electronic devices based on AC chopper and provides solution for the voltage sag which is long-lasting and deep amplitude of fading at rural power grid. Results: On the one hand, it reduces the cost and space of the device. On the other hand, it solves the short compensation time of UPS and DVR. Conclusion: The trial operation proves that this single-phase low-voltage compensation device has obvious compensation effect for most resistive loads and some inductive loads, less harmonic content, long continuous compensation time and stable performance. Originality: This compensation device integrates the advantages of UPS and DVR, and also solves their shortcomings and deficiencies. Limitations: The authors need to spend more time to the development and design three-phase low-voltage compensation device.
基于交流斩波器的单相电压补偿器的设计与控制
本文是越南AD-AF研究院2019年完成的“基于交流斩波器的单相电压补偿器的设计与控制”研究成果。问题:本文开发了基于交流斩波器的电力电子器件,为解决农村电网持久、衰落幅度大的电压凹陷问题提供了解决方案。目的:提高越南农村电力系统质量。方法学:随着电力系统的改进,电能质量已成为用户和电网公司关注的主要问题。电压暂降因其发生频率高、经济损失大而成为研究的重点。本文在对传统电压补偿装置进行全面分析的基础上,研制了基于交流斩波器的电力电子装置,为解决农村电网持久、衰落幅度大的电压凹陷问题提供了解决方案。结果:一方面降低了设备的成本和空间。另一方面解决了UPS和DVR补偿时间短的问题。结论:经试运行证明,该单相低压补偿装置对大部分电阻性负载和部分感性负载补偿效果明显,谐波含量少,连续补偿时间长,性能稳定。独创性:本补偿装置融合了UPS和DVR的优点,也解决了两者的不足。限制:作者需要花费更多的时间来开发和设计三相低压补偿装置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ingenieria Solidaria
Ingenieria Solidaria ENGINEERING, MULTIDISCIPLINARY-
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