Design and Control of PV-UPQC Using Variable Leaky LMS Based Algorithm for Power Quality Enhancement

Pragnyashree Ray, P. K. Ray
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引用次数: 2

Abstract

The proposed work deals with the multiple power quality (PQ) issues by the proper operation and effective control of photovoltaic (PV) fed unified power quality conditioner (UPQC) by using soft computing technique. Variable leaky least mean square (VLLMS) algorithm is neural network based soft computing technique which provides faster convergence rate without drifting the weight parameter beyond the limit. Here, extraction process of fundamental component for both series and shunt compensators of the UPQC is based on VLLMS algorithm. In this method extraction of reference signals for switching of voltage source converters (VSC) of series and shunt compensators is carried out by updating the weights in an iterative manner. The shunt compensator maintains DC link voltage, compensates reactive power demand of load and mitigates harmonics in the current due to the involvement of non-linear load. The series compensator maintains the voltage level at the load terminal and eliminates distortions in voltage waveform due to sag/swell and harmonics. The functionality of the proposed system is investigated by using MATLAB/Simulink.
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基于可变泄漏LMS算法的PV-UPQC电能质量增强设计与控制
本文采用软计算技术,通过对光伏馈电统一电能质量调节器(UPQC)的合理运行和有效控制,解决了多种电能质量问题。可变泄漏最小均方(VLLMS)算法是一种基于神经网络的软计算技术,它在保证权值参数不漂移的情况下具有较快的收敛速度。其中,UPQC串联补偿器和并联补偿器基元分量的提取过程均基于VLLMS算法。该方法通过迭代更新权值的方式提取串联和并联补偿器电压源变换器开关参考信号。并联补偿器维持直流链路电压,补偿负载的无功需求,并减轻由于非线性负载的参与而产生的电流谐波。串联补偿器保持负载端的电压水平,并消除由于凹陷/膨胀和谐波引起的电压波形畸变。利用MATLAB/Simulink对系统的功能进行了研究。
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