Real-time harmonic mitigation using fuzzy based 3-phase dual-buck half-bridge active power filter for industrial load

Ranjeeta Patel, Ashish Ranjan Dash, A. Panda
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Abstract

In recent years, a number of industry applications increased with the use of advanced power electronics devices and frequency inverter fed induction motor. This study presents a highly reliable 3-phase dual-buck half-bridge shunt active power filter (DB HB APF) for the elimination of current harmonics produced by these non-linear loads. The dual buck inverter circuit effectually eliminates the undesirable “shoot-through” occurrence ensues in conventional inverter circuit. The fuzzy based id-iq control strategy with adaptive hysteresis has been adopted to generate the reference compensating current. For validation, the proposed topology is implemented in the OPALRT LAB uses OP5142-Spartan 3 FPGA.
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基于模糊的工业负荷三相双降压半桥有源电力滤波器实时谐波抑制
近年来,随着先进的电力电子设备和变频馈电动机的使用,一些工业应用增加了。本研究提出了一种高可靠的三相双降压半桥并联有源电力滤波器(DB HB APF),用于消除这些非线性负载产生的电流谐波。双降压逆变电路有效地消除了传统逆变电路中出现的“通射”现象。采用自适应滞后的模糊pid -iq控制策略产生基准补偿电流。为了验证,所提出的拓扑在OPALRT实验室中使用OP5142-Spartan 3 FPGA实现。
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