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A Demand Side Industrial Aluminum Load Control Scheme based on Output Regulator Theory for Wind Power Smoothing

机译:基于输出调节器理论的需求侧工业铝负荷控制方案

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This paper investigates the short-term wind power fluctuation issues in an actual grid-connected industrial microgrid for aluminum production. As a type of energyintensive load, electrolytic aluminum load (EAL) presents great potentials for smooth the wind power fluctuation due to the large capacity and the load characteristic. In this paper, the detailed equivalent circuit and control model of EAL are discussed. By regulating the power consumption of EALs, a demand side control method based on the output regulator theory is proposed in the paper to smooth the wind power fluctuation. The effectiveness of the proposed control method is validated through the simulation on real-time digital simulator (RTDS) platform. The results demonstrate that the proposed demand control method is able to guarantee the positive dynamic performance of smoothing wind power fluctuation.
机译:本文调查了实际电网连接工业微电网中的短期风电波动问题,用于铝生产。作为一种能源突变载荷,电解铝负荷(EAL)由于大容量和负载特性而平滑风电波动的巨大潜力。本文讨论了EAL的详细等效电路和控制模型。通过调节EAL的功耗,提出了一种基于输出调节器理论的需求侧控制方法,以平滑风电波动。通过在实时数字模拟器(RTDS)平台上的仿真验证了所提出的控制方法的有效性。结果表明,所提出的需求控制方法能够保证平滑风电波动的正动态性能。

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