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REAL-TIME OPTIMAL DEMAND RESPONSE FOR FREQUENCY REGULATION IN SMART μGRID ENVIRONMENT

机译:智能μGrid环境中频率调节的实时最优需求响应

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Real-time demand response (DR) in smart μgrid has been shown to be an effective tool for frequency regulation with increased penetration of renewable energy resources into the grid. Since DR is recognized as an incentive or direct payment to the participants, it is consequently desired to minimize the cost of DR for the utility. This paper presents an optimal DR strategy for minimizing the cost of DR for the utility in smart grid era. The economic model developed by Pennsylvania/New Jersey/Maryland (PJM) utility in the USA is used on an IEEE 13-bus standard system. Simulation results verify the effectiveness of the proposed approach to minimize the cost of DR for the utility. It is also shown that the DR, with or without optimization, decreases the overall cost of frequency regulation for the utility compared to the conventional spinning reserve, without sacrificing system stability.
机译:智能μGrid中的实时需求响应(DR)已被证明是频率调节的有效工具,随着可再生能源资源的渗透到网格中的渗透。由于DR被认为是对参与者的激励或直接付款,因此需要最小化效用DR的成本。本文介绍了最佳策略策略,以最大限度地降低智能电网时代的效用DR的成本。美国宾夕法尼亚/新泽西州/马里兰州(PJM)公用事业开发的经济模式用于IEEE 13公交标准系统。仿真结果验证了所提出的方法的有效性,以最大限度地降低效用DR的成本。还表明,与传统纺纱储备相比,DR,有或没有优化,降低了本用设施的频率调节的总成本,而不会牺牲系统稳定性。

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