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Service Restoration for a Renewable-Powered Microgrid in Unscheduled Island Mode

机译:计划外岛模式下的可再生能源微电网的服务恢复

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This paper deals with the service restoration problem in renewable-powered microgrids that are driven islanded by an unscheduled breakdown from the main grid. The objective is to determine the maximum of the expected restorative loads by choosing the best arrangement of the power network configurations immediately from the beginning of the breakdown all the way to the end of the island mode. The intermittency nature of the renewable power, as well as the uncertainty of the duration of the breakdown pose new challenges to this classic optimization scheduling task. The proposed two scenario-splitting methods can be solved in a two-step solving procedure, in which a Lagrangian technique and dynamic programming are utilized to provide an analytical sub-optimal yet efficient solution to the original problem. Simulation results demonstrate that both methods can find solutions very close to optima effectively; the scheduling plan should be adjusted when the time evolves, especially when the renewable power generation takes a large portion in the power supply; and the energy storage system plays a significant role to reduce the risk of unreliability in the wind power forecasting, even with a small amount of capacity. Finally, the proposed approach can be applied to radially configured systems with other types of distributed generators.
机译:本文讨论了可再生能源微电网的服务恢复问题,这些电网是由主电网的意外故障驱动的。目的是通过从故障开始一直到孤岛模式结束之间立即选择最佳的电网配置布置,来确定预期的恢复负载的最大值。可再生能源的间歇性以及故障持续时间的不确定性给这一经典的优化调度任务带来了新的挑战。可以在两步求解过程中解决提出的两种场景拆分方法,其中利用拉格朗日技术和动态规划为原始问题提供分析性次优但有效的解决方案。仿真结果表明,两种方法都能有效地找到最接近最优解的解。随着时间的推移,应调整计划计划,尤其是在可再生能源发电占电源供应很大的情况下;储能系统在减少风电预测中不可靠风险方面起着重要作用,即使容量很小也是如此。最后,所提出的方法可以应用于具有其他类型的分布式发电机的径向配置的系统。

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