最大功率点跟踪对并网光伏系统动力学的影响

P. Dash, Mehrdad Kazerani
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摘要

本文研究了与配电网相连接的单级三相光伏系统的性能。该控制基于一个外部电压控制回路和一个内部电流调节回路。将一种基于扰动与观测(P&O)方法的最大功率点跟踪器(MPPT)连接到外部电压控制环。外电压控制环采用前馈补偿策略,使光伏系统动力学不受光伏阵列非线性特性的影响。通过仿真和数学分析,以往的研究工作表明,在没有前馈补偿的情况下,当天气条件不变时,运行工况的变化会引起振荡。仿真结果表明,在光伏系统稳态状态下,引入MPPT可以使光伏系统在不受天气条件影响和不需要前馈补偿的情况下,获得一个稳定运行的最佳工作点。此外,在使用和不使用MPPT的情况下进行了特征值分析,以验证仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of maximum power point tracking on grid-connected Photovoltaic system dynamics
This paper studies the performance of a single-stage, three-phase Photovoltaic (PV) system that is connected to a distribution network. The control is based on an outer voltage control loop and an inner current regulation loop. A Maximum Power Point Tracker (MPPT) based on Perturb & Observe (P&O) method is interfaced to outer voltage control loop. The outer voltage control loop is based on feed-forward compensation strategy to make the PV system dynamics immune to the PV array nonlinear characteristics. Through simulation and mathematical analysis, it has been shown in previous research work that in the absence of feed-forward compensation change in the operating condition causes oscillation with weather condition unchanged. This paper shows through simulation that incorporation of MPPT in the PV system under steady-state renders an optimal operating point which results in a stable operation irrespective of weather condition and without feed-forward compensation. Moreover, an eigen value analysis is carried out both with the MPPT and without the MPPT to verify the simulated results.
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