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Design of a command scheme for grid connected PV systems using classical controllers

机译:使用经典控制器的并网光伏系统的命令方案设计

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摘要

This paper proposes an approach of a grid connected PV control scheme, that provides optimal PV power and high quality of current injected into the grid and, therefore, high power quality. The control scheme combines current control and power control loops. To analyze the dynamic behavior and the design of the control strategy, a conventional two-stage energy conversion is selected and briefly modeled. The command developed around the first stage will raise the relatively low solar voltage to a suitable level corresponds to the optimal photovoltaic power. Around the second stage a voltage and current loops have been designed to regulate respectively the dc link voltage and the output inverter current. The aim of this command is to inject energy into the grid at unity power factor and a current with low harmonic distortion. All command loops of the grid connected photovoltaic system is based on classical controllers which are composed of proportional-integral (PI) regulators. The choice of control variables and the design of command loops are discussed. The proposed global model is simulated with the help of Matlab-Simulink, by considering a 3 kWc solar generator. (C) 2016 Published by Elsevier B.V.
机译:本文提出了一种并网光伏控制方案的方法,该方案可提供最佳的PV功率和注入电网的高质量电流,因此具有较高的电能质量。该控制方案结合了电流控制和功率控制回路。为了分析动态行为和控制策略的设计,选择了常规的两阶段能量转换并对其进行了简要建模。围绕第一阶段制定的命令将把相对较低的太阳能电压提高到与最佳光伏功率相对应的合适水平。在第二阶段附近,已设计了电压和电流环路,分别调节直流链路电压和输出逆变器电流。该命令的目的是将能量以统一的功率因数和低谐波失真的电流注入电网。并网光伏系统的所有命令回路均基于经典控制器,该经典控制器由比例积分(PI)调节器组成。讨论了控制变量的选择和命令循环的设计。通过考虑3 kWc太阳能发电机,借助Matlab-Simulink对拟议的全局模型进行了仿真。 (C)2016由Elsevier B.V.发布

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