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Design of variable structure control for wind energy system-based permanent magnet synchronous generator and operating under different grid conditions

机译:基于风能系统的永磁同步发电机变结构控制在不同电网条件下的设计

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摘要

This paper proposes a nonlinear control approach for an electrical network connected variable speed wind energy system (VS-WES) based on a permanent magnet synchronous generator (PMSG). The proposed configuration consists of a wind turbine (WT), a direct driven PMSG, a rectifier and an inverter which is connected to the power grid through a filter. Under the variation of wind velocity, the generator side rectifier is used to control the speed of the PMSG with maximum power point tracking (MPPT). The grid-side converter is employed to inject the extracted power into the electrical network, to regulate dc-link voltage and to attain unity power factor (UPF). This work explores a variable structure sliding mode control (VSSMC) considering the variation of wind speed. Lyapunov stability theory is used to find the conditions for the existence of the sliding mode. So, the performance of the VS-WES has been demonstrated under varying wind conditions and under a grid fault. The simulation results through MATLAB/Simulink show the effectiveness of the proposed VSSMC approach.
机译:本文提出了一种基于永磁同步发电机(PMSG)的电网连接变速风能系统(VS-WES)的非线性控制方法。提议的配置包括一个风力涡轮机(WT),一个直接驱动的PMSG,一个整流器和一个通过滤波器连接到电网的逆变器。在风速变化的情况下,发电机侧整流器用于通过最大功率点跟踪(MPPT)来控制PMSG的速度。电网侧转换器用于将提取的功率注入电网,调节直流链路电压并获得单位功率因数(UPF)。这项工作探讨了一种考虑风速变化的可变结构滑模控制(VSSMC)。使用李雅普诺夫稳定性理论来寻找存在滑模的条件。因此,已经证明了VS-WES在变化的风况和电网故障下的性能。通过MATLAB / Simulink进行的仿真结果表明了所提出的VSSMC方法的有效性。

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