Predictive Control of Active Filtering for Industrial Mining Installations

J. Simpson, Adolfo Paredes Palacios, J. Pontt, César A. Silva
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引用次数: 2

Abstract

Industrial installations require high reliability and performance, especially when the power system has a low short- circuit level and non-linear loads injecting harmonics which can generate electromagnetic interferences EMC/EMI threatening functionality and safety related with control and protection systems. Conventional passive harmonic filters compensate reactive power, and reduce parallel resonances for steady operation of nonlinear loads, but they are not effective enough when the loads have nonlinear nature with strong dynamical fluctuations. This paper presents the simulation and analysis of a predictive control method of an Active Filter. The method uses a discrete-time model of the system to predict the future value of a filtering current for all possible switching alternatives offered by the inverter, the switching combination which minimizes a quality function is selected. The quality function used in this work evaluates the current error in the next sampling time.
工矿设备主动滤波的预测控制
工业装置要求高的可靠性和性能,特别是当电力系统具有低短路电平和非线性负载注入谐波时,这些谐波会产生电磁干扰EMC/EMI,威胁与控制和保护系统相关的功能和安全。传统的无源谐波滤波器对非线性负载进行无功补偿,减少并联谐振,保证了非线性负载的稳定运行,但当负载具有较强的动态波动的非线性特性时,其效果并不理想。本文对一种有源滤波器的预测控制方法进行了仿真和分析。该方法使用系统的离散时间模型来预测逆变器提供的所有可能的开关替代方案的滤波电流的未来值,选择最小质量函数的开关组合。本工作中使用的质量函数评估下一次采样时间的当前误差。
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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