配电网风暴故障的DER分配与线路维修调度

Derek Chang, D. Shelar, Saurabh Amin
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引用次数: 5

摘要

许多地区的配电网络日益受到热带风暴造成的中断的影响。分布式能源(DERs)可以作为临时供应来源,以维持因中断而导致的“微电网”。在本文中,我们研究了适当的DER分配问题,以促进更有效的修复操作和更快的恢复。首先,我们使用线路故障的随机模型来估计DN组件(线路)的故障概率,该模型参数依赖于特定位置的风暴风场。其次,我们制定了一个两阶段的随机混合整数规划,该规划模拟了配电公司在DN(风暴前阶段)分配der的决策;并给出了最优调度和线路维修调度(风暴后阶段)的多期决策。该公式的一个关键特点是,它共同优化了单个微电网内的电力调度和线路维修计划,以最大限度地降低DER分配成本和因失载造成的成本之和。为了说明我们的方法,我们使用样本平均近似方法来解决不同风暴强度和DER/船员约束下的小型DN问题。
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DER Allocation and Line Repair Scheduling for Storm-induced Failures in Distribution Networks
Electricity distribution networks (DNs) in many regions are increasingly subjected to disruptions caused by tropical storms. Distributed Energy Resources (DERs) can act as temporary supply sources to sustain “microgrids” resulting from disruptions. In this paper, we investigate the problem of suitable DER allocation to facilitate more efficient repair operations and faster recovery. First, we estimate the failure probabilities of DN components (lines) using a stochastic model of line failures which parametrically depends on the location-specific storm wind field. Next, we formulate a two-stage stochastic mixed integer program, which models the distribution utility’s decision to allocate DERs in the DN (pre-storm stage); and accounts for multi-period decisions on optimal dispatch and line repair scheduling (post-storm stage). A key feature of this formulation is that it jointly optimizes electricity dispatch within the individual microgrids and the line repair schedules to minimize the sum of the cost of DER allocation and cost due to lost load. To illustrate our approach, we use the sample average approximation method to solve our problem for a small-size DN under different storm intensities and DER/crew constraints.
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