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A comprehensive framework for optimal day-ahead operational planning of self-healing smart distribution systems

机译:用于自愈式智能配电系统的最佳日前运营计划的综合框架

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摘要

Providing a cost-efficient and sustainable energy is one of the critical features in modern societies. In response to this demand, this paper proposes a comprehensive framework for optimal day-ahead operational planning of smart distribution systems considering both normal and emergency conditions. The proposed procedure for normal mode minimizes the operation costs and provides sustainability using the seamlessness index. By adjusting this index, the system can be adapted to achieve the desired self-sufficiency level along a specified planning horizon thanks to exploiting the sufficient local generations. The operational planning of emergency mode is integrated into the proposed framework to provide the optimal schemes which can handle the possible abnormal conditions using the available local generations and guarantee the desired resiliency level. In emergency mode, the proposed selfn-healing strategy will sectionalize the isolated area of the distribution system into island partitions to provide reliable power supply to the critical loads continuously. A set of key operational metrics including power loss, load priority, and systemn-related constraints are integrated into the proposed island partitioning procedure which promotes the functionality of the method. The proposed framework is implemented on a modified PG&E 69n-bus distribution system and is investigated through different case studies. The results of case studies demonstrate significant improvements and benefits which are obtained by applying the proposed framework.
机译:提供具有成本效益的可持续能源是现代社会的关键特征之一。针对这种需求,本文提出了一个综合框架,可同时考虑正常和紧急情况,从而优化智能配电系统的日前运营计划。正常模式的拟议程序可将运行成本降至最低,并使用无缝指数提供可持续性。通过调整该指标,由于利用了足够的本地世代,因此该系统可以适应沿指定的规划范围实现所需的自给水平。紧急模式的操作计划已集成到建议的框架中,以提供最佳方案,该方案可以使用可用的本地代来处理可能的异常情况并保证所需的弹性水平。在紧急模式下,建议的自我修复策略会将配电系统的隔离区域划分为多个岛状分区,从而为关键负载连续提供可靠的电源。包括功率损耗,负载优先级和与系统相关的约束在内的一组关键操作指标已集成到建议的孤岛划分过程中,该孤岛划分过程促进了该方法的功能。该框架在改进的PG&E 69n-bus配电系统上实施,并通过不同的案例研究进行了研究。案例研究的结果表明,通过应用建议的框架可以获得显着的改进和收益。

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