并网光伏单相逆变器的设计与仿真

Q2 Engineering
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引用次数: 0

摘要

本文重点研究了一种连接到配电网的单相光伏逆变器的新控制策略。所研究的逆变器是单相H桥,配备了正弦占空比调制的鲁棒控制策略。这种新的控制策略提供了优于控制策略的优点。最常用的一阶近似控制(PWM控制技术):硬件复杂度低;可变调制频率/周期;具有反馈的调制拓扑。该逆变器结构进一步由鲁棒PI控制器、升压斩波器和LCL滤波器组成。该逆变器所连接的低压电网由特性为230V-15A-50Hz的电压源实现和模拟,并通过锁相环(PLL)与后者同步。本文在Matlab/Simulink下对并网光伏电站的主要部件进行了建模和仿真,并对整个网络+光伏逆变器的全局行为进行了仿真,并给出了仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Simulation of Grid-Connected Photovoltaic Single-Phase Inverters
This paper focuses on a new control strategy for single-phase photovoltaic inverters connected to the electrical power distribution network. The inverter studied is single-phase H bridge, equipped with a robust control strategy by sinusoidal duty cycle modulation. This new control strategy offers the advantage over the control strategy. Most used control in its first approximation (PWM control technique): A low Hardware complexity; a variable modulation frequency/period; a topology of modulation with feedback. This inverter structure is further composed of the robust PI controllers, a boost chopper and an LCL filter. The low voltage electrical network to which this inverter is connected is materialized and simulated by a voltage source of characteristics 230V-15A-50Hz and synchronized to the latter by a phase-locked loop (PLL). In this article, the main components of the grid-connected PV power plant are modeled and simulated under Matlab/Simulink as well as the simulation of the global behavior of the entire network+PV inverter and the results obtained are presented.
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