THD Minimization in Electrical Distribution Networks Through Vector Space Control Implementation In Power Inverters

Francisco Vaca, Manuel Jaramillo, J. Muñoz, Carlos Barrera-Singaña, Wilson Pavón
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Abstract

Power Energy quality is determined by providing users with a service that is effective and meets their expectations. This calls for optimizing the core operations of an electrical power system, such as generation, transmission, and distribution. Energy is essential for the efficient operation of a nation's productive matrix as well as the performance of essential functions in our homes. This document's objective is the analysis and implementation of vector space control in photovoltaic distributed generation inverters on an IEEE 34-bar system with the goal of minimizing total harmonic distortion (THD), which is typically produced by everyday electronic devices connected to the electrical system. This document's premise is to improve the quality of the distribution network. A complete bridge inverter attached to the system's bus-bar number 25 is modulated using the control of six fundamental vectors. Since both modulation strategies in the integrated DG in THPWM and SVPWM improve the stability characteristics of the suggested distribution network, it is concluded that the results obtained are consistent with predictions.
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通过逆变器中的矢量空间控制实现配电网中THD的最小化
电能质量是通过向用户提供有效的、满足用户期望的服务来确定的。这就要求优化电力系统的核心业务,如发电、输电和配电。能源对于一个国家的生产矩阵的有效运作以及我们家庭的基本功能的发挥都是必不可少的。本文档的目标是在IEEE 34-bar系统上的光伏分布式发电逆变器中分析和实现矢量空间控制,目标是最小化总谐波失真(THD),这通常是由连接到电力系统的日常电子设备产生的。本文的前提是提高配电网的质量。一个完整的桥式逆变器连接到系统的母线编号25是调制使用六个基本矢量的控制。由于THPWM和SVPWM中集成DG的调制策略都改善了建议配电网的稳定性特性,因此得出的结果与预测一致。
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