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Stochastic Optimal Load Shedding with Heterogeneous Load Zones

机译:具有非均质负载区的随机最优减载

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Reliability and resilience in power distribution networks are vitally important to ensure seamless electricity delivery to end users. In this paper, we provide an optimization framework for stochastic optimal load shedding in power distribution networks that consists of heterogeneous load zones. Considering uncertain estimates of power consumption and energy shortfall, we formulate the system planning task as a chance-constrained integer quadratic program. By leveraging binary decomposition and McCormick relaxations, we develop two efficient algorithms yielding minimum total load shedding cost while respecting fairness among different end users. Simulation results corroborate the merits of our proposed framework and algorithms, which outperform the off-the-shelf solver BARON.
机译:配电网络中的可靠性和弹性对于确保向最终用户的无缝输电至关重要。在本文中,我们提供了一个由异构负载区域组成的配电网络中随机最优负荷削减的优化框架。考虑到功耗和能源短缺的不确定估计,我们将系统规划任务公式化为机会受限的整数二次程序。通过利用二进制分解和McCormick弛豫,我们开发了两种有效的算法,可产生最低的总负荷削减成本,同时又尊重不同最终用户之间的公平性。仿真结果证实了我们提出的框架和算法的优点,其优于现成的求解器BARON。

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