自然灾害后紧急电力服务的恢复

Moein Choobineh, S. Mohagheghi
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引用次数: 17

摘要

自然灾害事件释放的巨大能量可以摧毁受影响城市和农村地区的关键基础设施。对电网可能造成的损害可能导致大规模电力供应中断,这可能极大地阻碍灾后救援工作。为了使社区能够抵御自然灾害,电网必须具有灾后自愈能力,使其能够在合理的短时间内尽可能多地恢复电网的供电。传统上,电力服务的恢复是通过首先确定替代变电站和可能的路线,然后重新配置网络,以便停电区域可以通过这些变电站重新供电。然而,这种方法在自然灾害之后可能不可行。这是因为由于该事件造成的直接或间接损害,网络的许多部分可能已经无法运行。在这里,服务恢复可以通过分散的方法来实现,即形成一个或多个微电网,以便在当地供应负载。针对自然灾害后应急电力恢复问题,提出了一种微电网调度方案。建立了一个非线性混合整数优化问题,该问题在容量和燃料可用性约束下寻找微电网内能源资源的最优调度。为了证明该解决方案的适用性,提供了一个使用IEEE 123总线测试分配系统的案例研究。
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Emergency electric service restoration in the aftermath of a natural disaster
The colossal amount of energy released by natural disaster events can devastate the critical infrastructure of affected cities and rural regions. Possible damages to the electric power grid can lead to large-scale interruption in electric service, which could greatly impede post-disaster relief efforts. To make communities resilient against natural hazards, the power grid must have post-disaster self-healing capability, allowing it to restore power to as many sections of the network as possible within a reasonably short timeframe. Traditionally, electric service restoration is performed by first identifying alternative substations and possible routes, followed by network reconfiguration, so that the outage area can be re-energized via these substations. However, this approach may not be possible in the aftermath of a natural disaster. This is because many parts of the network may already have become non-operational due to direct or indirect damages incurred by the event. Here, service restoration can be achieved through a decentralized approach where one or more Microgrids are formed in order to supply the loads locally. A Microgrid dispatch solution is proposed in this paper for emergency electric service restoration in the aftermath of a natural disaster event. A nonlinear mixed-integer optimization problem is formulated that finds the optimal dispatch of the energy resources within the Microgrid subject to capacity and fuel availability constraints. To demonstrate the applicability of the solution, a case study is provided using the IEEE 123-bus test distribution system.
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