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Two-Stage Adaptive Restoration Decision Support System for a Self-Healing Power Grid

机译:自愈电网的两阶段自适应恢复决策支持系统

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Power outages cost American industries and businesses billions of dollars and jeopardize the lives of hospital patients. The losses can be greatly reduced with a fast, reliable, and flexible self-healing tool. This paper is aimed to tackle the challenging task of developing an adaptive restoration decision support system (RDSS). The proposed RDSS determines restoration actions both in planning and real-time phases and adapts to constantly changing system conditions. The comprehensive formulation encompasses practical constraints including ac power flow, dynamic reserve, and load modeling. The combinatorial problem is decomposed into a two-stage formulation solved by an integer L-shaped algorithm. The two stages are then executed online in the RDSS framework employing a sliding window method. The IEEE 39-bus system has been studied under normal and contingency conditions to demonstrate the effectiveness and efficiency of the proposed online RDSS.
机译:停电给美国工业和企业造成了数十亿美元的损失,并危及了医院患者的生命。使用快速,可靠和灵活的自我修复工具可以大大减少损失。本文旨在解决开发自适应恢复决策支持系统(RDSS)的艰巨任务。拟议的RDSS确定了计划阶段和实时阶段的恢复措施,并适应不断变化的系统条件。全面的表述涵盖了实际的限制条件,包括交流潮流,动态储备和负载建模。组合问题被分解为由整数L形算法求解的两阶段公式。然后使用滑动窗口方法在RDSS框架中在线执行这两个阶段。已经在正常和偶发情况下对IEEE 39总线系统进行了研究,以证明所提出的在线RDSS的有效性和效率。

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