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Grid-Voltage-Sensorless Method Based Continuous Sliding Mode Control of Three-Phase Active Power Filter

机译:基于电网电压无传感器方法的三相有源电力滤波器连续滑模控制

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In this paper, a grid-voltage-sensorless method based continuous terminal sliding mode control (GVSCTSMC) is proposed for active power filter. First, the dynamic model of three-phase shunt active power filter is introduced. Second, a voltage observer is developed to replace the grid-voltage sensor to eliminate the influence of sensor fault using the second order generalized integral principle (SOGI). Then a continuous terminal sliding mode control is designed to guarantee the fast and finite-time tracking of reference current. In addition, compensation control term is added to ensure the elimination of chattering phenomenon caused by the switching term. Compared to the conventional sliding mode control method, the proposed continuous terminal sliding control method obtains a faster convergence and better tracking performance. Simulation results demonstrate that the proposed control methods offer superior properties in both steady state and transient operation.
机译:本文提出了一种基于电网电压无传感器方法的连续端子滑模控制(GVSCTSMC)用于有源电力滤波器。首先,介绍了三相并联有源电力滤波器的动力学模型。其次,开发了一种电压观测器,以取代电网电压传感器,从而使用二阶广义积分原理(SOGI)消除了传感器故障的影响。然后设计了连续端子滑模控制,以确保对参考电流进行快速且有限的跟踪。另外,添加补偿控制项以确保消除由切换项引起的颤动现象。与传统的滑模控制方法相比,所提出的连续终端滑模控制方法具有更快的收敛速度和更好的跟踪性能。仿真结果表明,所提出的控制方法在稳态和瞬态运行中均具有优异的性能。

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