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Chance-constrained day-ahead hourly scheduling in distribution system operation

机译:配电系统运行中受机会限制的提前日小时调度

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This paper aims to propose a two-step approach for day-ahead hourly scheduling in a distribution system operation, which contains two operation costs, the operation cost at substation level and feeder level. In the first step, the objective is to minimize the electric power purchase from the day-ahead market with the stochastic optimization. The historical data of day-ahead hourly electric power consumption is used to provide the forecast results with the forecasting error, which is presented by a chance constraint and formulated into a deterministic form by Gaussian mixture model (GMM). In the second step, the objective is to minimize the system loss. Considering the nonconvexity of the three-phase balanced AC optimal power flow problem in distribution systems, the second-order cone program (SOCP) is used to relax the problem. Then, a distributed optimization approach is built based on the alternating direction method of multiplier (ADMM). The results shows that the validity and effectiveness method.
机译:本文旨在提出一种用于配电系统运行中的提前日小时调度的两步方法,该方法包含两个运行成本,即变电站级和馈线级的运行成本。第一步,目标是通过随机优化使从日间市场购买的电力最小化。利用日前小时用电量的历史数据为预测结果提供预测误差,该误差由机会约束表示,并通过高斯混合模型(GMM)公式化为确定性形式。在第二步中,目标是使系统损耗最小化。考虑到配电系统中三相平衡AC最优潮流问题的非凸性,使用二阶锥规划(SOCP)来缓解该问题。然后,基于乘数交替方向法(ADMM),建立了一种分布式优化方法。结果表明了该方法的有效性和有效性。

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