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Active Front-End converter applied for the THD reduction in power systems

机译:主动前端转换器应用于电力系统的THD减少

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The Active Front-End (AFE) converter topology is generated by modifying a conventional back-to-back converter, from using a single VSC to use pVCS connected in parallel. The AFE configuration improves the capability, efficiency and reliability of energy conversion devices connected to the power system. In this paper, a novel technique to reduce the total harmonic distortion (THD) in an AFE converter topology is proposed and analyzed. The THD reduction is achieved by applying a phase shift angle in the SPWM switching signals of each AFE converter VSC. To verify the functionality and robustness of the proposed methodology, the power system simulation in Matlab-Simulink is analyzed for a type-4 wind turbine converter with total power output of 9MW. The obtained simulation results show a THD reduction up to 2.5 for AFE connected to the power network.
机译:通过修改传统的背对背转换器,从使用单个VSC来使用并联连接的PVC来产生主动前端(AFE)转换器拓扑。 AFE配置改善了连接到电力系统的能量转换设备的能力,效率和可靠性。 本文提出并分析了一种降低AFE转换器拓扑中总谐波失真(THD)的新技术。 通过在每个AFE转换器VSC的SPWM切换信号中施加相移角来实现THD减小。 为了验证所提出的方法的功能和鲁棒性,分析MATLAB-SIMULINK中的电力系统仿真,用于4型风力涡轮机转换器,总功率输出为9MW。 所获得的仿真结果表明,对于连接到电力网络的AFE,THD减少高达2.5。

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