当前位置: X-MOL 学术Ain Shams Eng. J. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Variable nonlinear gain fuzzy with improved synchronous reference frame control strategy for performance enhancement of unified power quality conditioner
Ain Shams Engineering Journal ( IF 6.0 ) Pub Date : 2020-06-12 , DOI: 10.1016/j.asej.2020.04.004
Rajesh Kumar Patjoshi , Rakhee Panigrahi , Venkata Ratnam Kolluru

This paper proposes a variable nonlinear gain fuzzy (VNGF) controller and negative-feedback based phase-locked loop (NFPLL) with improved synchronous reference frame (ISRF) control strategy for unified power quality conditioner (UPQC). Several power quality (PQ) problems present in the power distribution network can be exterminated through the proposed VNGF-NFPLL-ISRF control method. The VNGF method employs Takagi-Sugeno Fuzzy (TSF) type numerical consequent rule with a nonlinear alteration of variable control gain for controlling dc-bus capacitor voltage of UPQC, which limits the voltage deviances through the power system perturbations and delivers quick settling time for dc-bus voltage. The scheme of NFPLL based synchronization is built upon presenting a negative-feedback control action in the interior loop of conventional PLL and hence a greater extent of protection to grid as well as load disturbances, unresponsive to noise, harmonics and additional contaminations existing through the signal can be attained. Moreover, the novelty of ISRF control method relies upon nonintervention with low pass filter (LPF) and high pass filter (HPF). As a consequence, the proposed VNGF-NFPLL-ISRF control technique quickly and accurately extracts the reference signal during power system perturbations. The effectiveness of the proposed approach is experimentally validated and a comparative survey has been accomplished with conventional TSF controller based SRF method (TSF-SRF).



中文翻译:

具有改进的同步参考系控制策略的可变非线性增益模糊,以提高统一电能质量调节器的性能

本文针对统一电能质量调节器(UPQC),提出了一种具有改进的同步参考系(ISRF)控制策略的可变非线性增益模糊(VNGF)控制器和基于负反馈的锁相环(NFPLL)。通过提出的VNGF-NFPLL-ISRF控制方法,可以消除配电网络中存在的几个电能质量(PQ)问题。VNGF方法采用Takagi-Sugeno Fuzzy(TSF)类型的数值结果法则,通过可变可变增益的非线性变化来控制UPQC的直流母线电容器电压,从而限制了通过电力系统扰动产生的电压偏差,并为直流电提供了快速的建立时间-总线电压。基于NFPLL的同步方案是基于在常规PLL的内部环路中呈现负反馈控制作用而建立的,因此对电网和负载干扰具有更大程度的保护,对噪声,谐波和信号中存在的其他污染无响应可以实现。而且,ISRF控制方法的新颖性依赖于对低通滤波器(LPF)和高通滤波器(HPF)的不干预。结果,提出的VNGF-NFPLL-ISRF控制技术可在电力系统扰动期间快速,准确地提取参考信号。通过实验验证了所提出方法的有效性,并且已使用基于常规TSF控制器的SRF方法(TSF-SRF)进行了比较调查。可以获得对噪声,谐波和信号中存在的其他污染无响应的信号。而且,ISRF控制方法的新颖性依赖于对低通滤波器(LPF)和高通滤波器(HPF)的不干预。因此,提出的VNGF-NFPLL-ISRF控制技术可在电力系统扰动期间快速,准确地提取参考信号。通过实验验证了所提出方法的有效性,并且已使用基于常规TSF控制器的SRF方法(TSF-SRF)进行了比较调查。可以获得对噪声,谐波和信号中存在的其他污染无响应的信号。而且,ISRF控制方法的新颖性依赖于对低通滤波器(LPF)和高通滤波器(HPF)的不干预。结果,提出的VNGF-NFPLL-ISRF控制技术可在电力系统扰动期间快速,准确地提取参考信号。通过实验验证了所提出方法的有效性,并且已使用基于常规TSF控制器的SRF方法(TSF-SRF)进行了比较调查。提出的VNGF-NFPLL-ISRF控制技术可快速,准确地提取电力系统扰动期间的参考信号。通过实验验证了所提出方法的有效性,并且已使用基于常规TSF控制器的SRF方法(TSF-SRF)进行了比较调查。提出的VNGF-NFPLL-ISRF控制技术可快速,准确地提取电力系统扰动期间的参考信号。通过实验验证了所提出方法的有效性,并且已使用基于常规TSF控制器的SRF方法(TSF-SRF)完成了比较调查。

更新日期:2020-06-12
down
wechat
bug