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Sliding mode control with grid voltage modulated DPC for voltage source inverters under distorted grid voltage

机译:用电网电压调制DPC的滑模控制,电压源逆变器扭曲电压电压

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The grid voltage modulated direct power control (GVM-DPC) for grid-connected voltage source inverters has been introduced so that it can overcome the poor steady-state performance of the DPC. However, it was designed for a nondistorted grid voltage. In this paper, the GVM-DPC is modified to overcome a distorted grid voltage (e.g., fifth and seventh harmonics). First, a band pass filter is applied to extract the fundamental component of the voltage so as to build a model for the implementation of the GVM-DPC method. Next, a sliding mode control (SMC) is designed to handlethe terms of the harmonic in order to minimize the total harmonic distortion (THD) of the output currents. Simulations and experimental results are presented to verify the effectiveness of the proposed SMC with GVM-DPC control strategy. It is shown that although the performance of real and reactive powers are sacrificed, the THD of the current is significantly reduced.
机译:已经引入了用于电网连接电压源逆变器的电网电压调制直接功率控制(GVM-DPC),以便它可以克服DPC的稳态性能差。但是,它设计用于Nondistored电网电压。在本文中,修改了GVM-DPC以克服扭曲的网格电压(例如,第五和第七次谐波)。首先,应用带通滤波器以提取电压的基本组件,以构建用于实现GVM-DPC方法的模型。接下来,将滑动模式控制(SMC)设计成处理谐波的术语,以便最小化输出电流的总谐波失真(THD)。提出了仿真和实验结果,以验证提出的SMC与GVM-DPC控制策略的有效性。结果表明,尽管处死了实际和反应力的性能,但电流的THD显着降低。

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