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An Isolated Industrial Power System Driven by Wind-Coal Power for Aluminum Productions: A Case Study of Frequency Control

机译:铝产品用风煤动力驱动的隔离工业动力系统:以频率控制为例

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Due to the uneven geographical distribution between load and wind power, currently it is difficult to integrate the large-scale wind power into the State Grid in China. There are significant wind curtailments for wind farms due to system restrictions. This paper proposes a new way of utilizing wind power, i.e., in-situ consumption, as an alternative to the costly development of long-distance transmission of large-scale wind power. Electrolytic aluminum load, which is one of the most typical high energy consuming loads, is employed to absorb the excess wind power in western China. An actual isolated industrial power system for aluminum production driven by wind power and coal-fired power is described. The penetration level of wind power in the isolated power system is up to 48.8%. The power imbalance between generation and load demand caused by wind power fluctuation or the tripping of coal-fired generators can dramatically impact the frequency stability of the isolated power system, which is of small inertia. An online identification method of power imbalance based on Wide Area Measurement System (WAMS) is presented. According to the characteristics of the electrolytic aluminum load, a system frequency control method by regulating the bus voltages of aluminum loads to eliminate the power imbalance is introduced. The simulation is done in Real Time Digital Simulator (RTDS) and the results verify the validity of the proposed frequency control method.
机译:由于负荷与风能之间的地理分布不均,目前很难将大型风能纳入中国的国家电网。由于系统限制,风电场的风能大幅减少。本文提出了一种新的利用风能的方法,即就地消耗,以替代昂贵的大规模风能远距离传输。铝电解负载是最典型的高能耗负载之一,被用来吸收中国西部的多余风能。描述了一种由风能和燃煤动力驱动的用于铝生产的实际隔离工业动力系统。风力发电在隔离电力系统中的渗透率高达48.8%。由风能波动或燃煤发电机跳闸引起的发电与负荷需求之间的功率不平衡会极大地影响隔离电力系统的频率稳定性,这具有很小的惯性。提出了一种基于广域测量系统(WAMS)的电力不平衡在线识别方法。根据铝电解负载的特点,提出了一种通过调节铝负载的母线电压来消除功率不平衡的系统频率控制方法。仿真是在实时数字仿真器(RTDS)中完成的,结果验证了所提出的频率控制方法的有效性。

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