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Analysis and experimental evaluation of shunt active power filter for power quality improvement based on predictive direct power control

机译:基于预测直接功率控制的功率质量改进分流与实验评价

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This paper discusses the use of the concept of classical and predictive direct power control for shunt active power filter function. These strategies are used to improve the active power filter performance by compensation of the reactive power and the elimination of the harmonic currents drawn by non-linear loads. A theoretical analysis followed by a simulation using MATLAB/Simulink software for the studied techniques has been established. Moreover, two test benches have been carried out using the dSPACE card 1104 for the classic and predictive DPC control to evaluate the studied methods in real time. Obtained results are presented and compared in this paper to confirm the superiority of the predictive technique. To overcome the pollution problems caused by the consumption of fossil fuels, renewable energies are the alternatives recommended to ensure green energy. In the same context, the tested predictive filter can easily be supplied by a renewable energy source that will give its impact to enhance the power quality.
机译:本文讨论了使用经典和预测直接功率控制的概念进行分流有源电力滤波器功能。这些策略用于通过补偿无功功率和通过非线性负载绘制的谐波电流来改善有源电力滤波器性能。已经建立了使用MATLAB / Simulink软件进行研究的理论分析,然后已经为研究技术进行了模拟。此外,已经使用DSPACE卡1104进行了两种测试台,用于经典和预测DPC控制,以实时评估研究的方法。在本文中提出并比较了得到的结果,以确认预测技术的优越性。为了克服由化石燃料消耗引起的污染问题,可再生能源是建议确保绿色能源的替代方案。在同一背景下,测试的预测滤波器可以通过可再生能源容易地提供,这将产生其影响,以提高电力质量。

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