一种改进的数字迟滞和人工神经网络(ANN)算法在单相并联有源滤波器控制中的应用

A. Sabo, N. I. Abdulwahab, M. Amran M. Radzi, N. Mailah, N F A Abdul Rahman
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引用次数: 4

摘要

目前,电力供应商及其用户对电力质量的关注达到了顶峰,当某些负荷(主要是非线性负荷)施加到电网上时,当前的谐波简明注入活动就会逼近电网。随着有源电力滤波器(APF)在这方面的广泛知识和复杂性,必须开发一种高性能的提取算法,结合快速开关技术,以充分利用该器件的最佳潜力。本文介绍了一种新的有效的补偿电网中这种不良影响的算法,即在开关分析中对带宽缺失进行修改的数字迟滞算法(称为无带数字迟滞算法)和一种改进的人工神经网络,负责检测并产生谐波代理注入电网所需的补偿信号。通过仿真研究(在MATLAB SIMULINK环境下)实现了所提出的方案,并对所得到的有效结果进行了讨论,以验证其性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A modified digital hysteresis and artificial neural network (ANN) algorithms in single phase shunt active power filter control
Suppliers of electricity and their consumers have attained a peak stage of concern regarding the quality of electric power nowadays, with current harmonics concise injection activities looms the power networks as certain loads (principally nonlinear loads) are applied on to it. With active power filter (APF) wide knowledge and sophistication in this regard, a high performance extraction algorithm coupled with a fast switching technique must be developed in utilizing this device optimum potential. This paper introduces a new effective algorithms for the compensation of this ill effects in the power networks namely the digital hysteresis algorithm with a modification by bandwidth absence in the switching analysis (called bandless digital hysteresis algorithm) and a modified artificial neural network responsible to detect and generate the necessary compensation signal injected on to the power networks by the harmonic agents. The proposed scheme is achieved via simulation studies (under MATLAB SIMULINK environment) and effectives results obtained are discussed to verify its performance.
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