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A Multilayer Preventive Control to Regulate Voltage and Frequency in Autonomous Microgrids

机译:一种多层预防控制,以调节自主微电网中的电压和频率

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This paper proposes a method to prevent the frequency and voltage excursion in autonomous microgrids beyond their predefined desired ranges, following any change in load and/or renewable energy output. The proposed technique utilizes the short-term prediction data of load and renewable generations to determine any prospective occurrence of events that violate the microgrid's predefined range of frequency or voltage. It then determines the optimal generation for dispatchable sources and the MG's most appropriate topology as first options to prevent the violation. If it is not enough, the proposed technique goes on to engage in supporting actions, such as exchanging power with neighboring microgrid, utilizing energy storages, demand response and renewable energy curtailment. It considers the technical, reliability and environmental aspects of the MG along with the operational cost, as well as the cost of supporting actions. The optimized control variables are sent to the local controller before the occurrence of the event to maintain the frequency and voltage within the desired limits.
机译:本文提出了一种方法,以防止自主微电网中的频率和电压偏移超出其预定义的所需范围之后的载荷和/或可再生能量输出的任何变化。所提出的技术利用负载和可再生代的短期预测数据来确定违反MicroGrid预定频率或电压范围的任何潜在事件的前瞻性发生。然后,它确定调度源和MG最合适的拓扑的最佳生成作为防止违规的第一个选项。如果是不够的话,所提出的技术继续参与支持的动作,例如利用能量存储,需求响应和可再生能量缩减的与相邻的微电网交换电力。它考虑了MG的技术,可靠性和环境方面以及运营成本,以及支持行动的成本。优化的控制变量在发生事件之前将其发送到本地控制器,以将频率和电压保持在所需限度内。

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