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Resistive optimization with enhanced PLL based nonlinear variable gain fuzzy hysteresis control strategy for unified power quality conditioner

机译:统一电能质量调节器的基于增强型PLL的非线性可变增益模糊磁滞控制策略的电阻优化

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摘要

This paper proposes a Resistive Optimization Technique (ROT) incorporated with enhanced phase-locked loop (EPLL) based Nonlinear Variable Gain Fuzzy (NVGF) hysteresis control strategy for three-phase, three-wire Unified Power Quality Conditioner (UPQC) for compensating current harmonics, reactive power, voltage sag/swell, voltage harmonics and voltage unbalance present in the power system distribution network. This novel resistive optimization control strategy is exploited for reference signal generation for both shunt and series inverter. This proposed algorithm adaptively regulates the DC-link capacitor voltage without utilizing additional controller circuit and makes the control system simple as it does not involve any complex optimization methods. Furthermore, a nonlinear variable gain fuzzy based hysteresis controller is proposed for controlling the hysteresis band, which effectively reduces the band violation and improves the tracking behavior of UPQC during load transient, distortion and unbalanced supply conditions of power system. The proposed control strategy of UPQC is validated through MATLAB/SIMULINK followed by the experimental setup accomplished with real-time-hardware in the loop (HIL) system OPAL-RT simulator and adequate results are reported after a comparative assessment with the conventional PI and hysteresis controller. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种电阻优化技术(ROT),该技术与基于增强锁相环(EPLL)的非线性,可变增益模糊(NVGF)滞后控制策略相结合,用于三相三线统一电能质量调节器(UPQC),以补偿电流谐波,配电系统中存在的无功功率,电压骤降/骤升,电压谐波和电压不平衡。这种新颖的电阻优化控制策略被用于并联和串联逆变器的参考信号生成。该算法无需使用额外的控制器电路即可自适应地调节直流母线电容器的电压,并且由于不涉及任何复杂的优化方法,因此使控制系统变得简单。此外,提出了一种基于非线性可变增益模糊的磁滞控制器来控制磁滞带,有效地减小了频带违规并改善了UPQC在电力系统负载瞬变,失真和不平衡供电条件下的跟踪性能。通过MATLAB / SIMULINK验证了所提出的UPQC控制策略,然后通过实时硬件在回路(HIL)系统OPAL-RT仿真器中完成了实验设置,并在与常规PI和磁滞进行比较评估后报告了足够的结果控制器。 (C)2016 Elsevier Ltd.保留所有权利。

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