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An efficient interactive framework for improving resilience of power-water distribution systems with multiple privately-owned microgrids

机译:一种有效的交互式框架,用于提高多个私人微电网的电力水分配系统的弹性

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摘要

Resilience improvement of power distribution networks against natural disasters is an important problem. Water network similar to other important infrastructures depends on power networks. In this paper, resilience improvement is defined as increasing the users' accessibility to water and power after natural disasters. Microgrids with appropriate operation can provide energy to restore disconnected loads in distribution networks. In the proposed interactive framework, a stochastic energy management program for microgrids is designed that not only determines the amount of energy can be delivered to distribution systems, but also considers the reliability of local loads during emergency conditions. Each microgrid provides a list of bid-quantity energy blocks to the distribution system operator (DSO) during the emergency period. Then, the DSO chooses the best plan to restore disconnected loads considering inaccessibility values to power and water and also the damage of power and water distribution networks. Demand response actions in microgrids are also considered as effective tools for the energy management program, and their impact on the distribution system resilience is investigated. The proposed model is tested on the modified IEEE 33-bus distribution system with multiple microgrids, and the effectiveness of the proposed method is validated accordingly.
机译:对抗自然灾害的配电网络的恢复能力提高是一个重要问题。类似于其他重要基础设施的水网络取决于电力网络。在本文中,恢复力改善被定义为增加自然灾害后的用户对水和电力的可接近性。具有适当操作的微电网可以提供能量来恢复分发网络中的断开的负载。在拟议的互动框架中,设计用于微电网的随机能量管理程序,不仅确定了能源的能量,而且还认为在紧急情况下局部负载的可靠性。每个MicroGrid在急诊期间为分配系统操作员(DSO)提供了一个出价能量块列表。然后,DSO选择最佳计划,以便将断开的负载恢复,考虑到电力和水的不可访问,以及电力和水分配网络的损坏。微电网中的需求响应作用也被认为是能源管理计划的有效工具,并调查了它们对分布系统弹性的影响。所提出的模型在具有多个微电网的改进的IEEE 33总线分配系统上测试,并且相应地验证了所提出的方法的有效性。

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