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A Back-Stepping Sliding Mode Control Strategy Based on Extended Observer for Photovoltaic Grid-Connected Inverter

机译:基于扩展观测器的光伏网格连接逆变器的后台滑模控制策略

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In the photovoltaic power generation system, the grid-connected inverter is an important link to realize system connection with the electricity grid, but the existence of various interferences of the external environment and the system itself brings a series of problems. In this paper, the circuit of the LCL is used to filter of photovoltaic grid-connected inverter output, and step-sliding mode control and the extended state observer are combined to complete the tracking control of the inverter system. Three state variables of the control strategy are the output voltage of inverter system its first and second derivative, back-stepping and sliding mode control are combined, and the extended state observer is designed to estimate the composite interference, then its output compensates to the back-stepping sliding mode controller. The effectiveness of the control strategy is proved by the simulation of photovoltaic grid-connected inverter system in Matlab.
机译:在光伏发电系统中,网格连接的逆变器是实现与电网系统连接的重要连杆,但外部环境的各种干扰的存在和系统本身的存在带来了一系列问题。在本文中,LCL的电路用于过滤光伏电网连接的逆变器输出,并组合慢滑模式控制和扩展状态观察者以完成逆变器系统的跟踪控制。控制策略的三个状态变量是逆变器系统的输出电压,其第一和第二导数,后台踩踏和滑动模式控制组合,扩展状态观察器旨在估计复合干扰,然后其输出补偿后部-stepping滑模控制器。通过在MATLAB中的光伏电网连接逆变器系统的模拟证明了控制策略的有效性。

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