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Power System Resilience Enhancement in Typhoons Using a Three-Stage Day-Ahead Unit Commitment

机译:使用三阶段前方单位承诺,电力系统弹性增强台风中的增强

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摘要

We propose a three-stage resilient unit commitment model which considers uncertain typhoon paths and line outages to improve the power system resilience against typhoon events. The proposed solution coordinates resources in response to the worst-case scenario for each possible typhoon path. The optimal decision is based on the characterization of the power system schedule into three stages of preventive control, emergency control, and restoration. Preventive control is performed before the typhoon occurs by quickly adjusting the three-stage resilient unit commitment schedule; emergency control is conducted during the typhoon by shedding local loads to meet the power balance, while other control strategies are assumed to be unavailable due to possible interruptions in the communication system; restoration is realized after the typhoon, when resources are optimally dispatched to repair the outages of critical devices and recover the normal operation state of the power system quickly. Considering the typhoon path uncertainty, we have introduced a stochastic model for possible typhoon paths where all possible affected lines along each typhoon path are assumed to be on outage during the typhoon. Accordingly, we explore the strategy for co-optimizing the three stages in unit commitment. The proposed model is tested on the IEEE 118-bus system and the real-world provincial system to verify its effectiveness.
机译:我们提出了一个三阶段的弹性单元承诺模型,该模型考虑了不确定的台风路径和线路停电,提高对台风活动对电力系统的恢复能力。提出的解决方案坐标资源应对最坏的情况对每个可能的台风路径。最优决策是基于电力系统调度的特性成为预防控制,应急控制,以及恢复三个阶段。通过快速调整三级弹性单元承诺时间表发生台风之前进行预防性控制;紧急控制是由脱落的局部载荷,以满足电力平衡,而其他的控制策略被认为是不可用的,由于通信系统中可能中断台风期间进行;恢复被台风后实现,当资源优化调度修复关键设备的停机和快速恢复电力系统的正常运行状态。考虑到台风路径的不确定性,我们已经介绍了其中沿每次台风路径的所有可能受影响的线路被认为是对停运台风期间可能的台风路径的随机模型。因此,我们探讨共同优化三个阶段中,单位承担的策略。该模型是IEEE 118总线系统与真实世界的省级系统,以验证其有效性进行测试。

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