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Advanced Control Strategy of Dynamic Voltage Restorers for Distribution System Using Sliding Mode Control Input-Output Feedback Linearization

机译:滑模控制输入输出反馈线性化的配电系统动态电压恢复器高级控制策略

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In this paper, a nonlinear control scheme for dynamic voltage restorer (DVR) under grid voltage sags and nonlinear loads is proposed to mitigate the voltage disturbances for loads. First, the nonlinear model of the system consisting of LC filter based on a feedback linearization technique is obtained in the d-q synchronous reference frame. Then, the controller design of the linearized model is performed by employing the sliding mode control, where the load voltages are kept constant by controlling the d-q axis components of the DVR output voltages. With this scheme, the power quality is significantly improved, compared with the traditional methods with the PI controller under grid voltage sags and nonlinear loads. Also, the system cost and power loss of the proposed DVR is significantly minimized thanks to the use of a smaller number of power switches (four-switch three-phase inverter) with a lower rating voltage without degrading the compensation performance of the DVR. Simulation studies are performed to verify the validity of the proposed method.
机译:本文提出了一种在电网电压骤降和非线性负载下的动态电压恢复器(DVR)的非线性控制方案,以减轻负载的电压干扰。首先,在d-q同步参考系中获得基于反馈线性化技术的由LC滤波器组成的系统的非线性模型。然后,通过采用滑模控制来执行线性化模型的控制器设计,其中通过控制DVR输出电压的d-q轴分量将负载电压保持恒定。与在电网电压骤降和非线性负载下使用PI控制器的传统方法相比,使用该方案可以显着改善电能质量。此外,由于使用了较少数量的额定电压较低的电源开关(四开关三相逆变器),而不会降低DVR的补偿性能,因此,建议的DVR的系统成本和功率损耗已大大降低。通过仿真研究验证了所提方法的有效性。

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