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首页> 外文期刊>Proceedings of the Workshop on Principles of Advanced and Distributed Simulation >A TWO-STAGE NON-LINEAR PROGRAM FOR OPTIMAL ELECTRICAL GRID POWER BALANCE UNDER UNCERTAINTY
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A TWO-STAGE NON-LINEAR PROGRAM FOR OPTIMAL ELECTRICAL GRID POWER BALANCE UNDER UNCERTAINTY

机译:不确定条件下最优电网电量平衡的两阶段非线性程序

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摘要

We propose a two-stage non-linear stochastic formulation for the economic dispatch problem under renewable-generation uncertainty. Each stage models dispatching and transmission decisions that are made on subsequent time periods. Certain generation decisions are made only in the first stage and the second stage realizes the actual renewable generation, where the uncertainty in renewable output is captured by a finite number of scenarios. Any resulting supply-demand mis-match must then be alleviated using extra, high marginal-cost power sources that can be tapped in short order. We propose two outer approximation algorithms to solve this nonconvex optimization problem to optimality. We show that under certain conditions the sequence of optimal solutions obtained under both alternatives has a limit point that is a globally-optimal solution to the original two-stage nonconvex program. Numerical experiments for a variety of parameter settings were carried out to indicate the efficiency and usability of this method of large practical instances.
机译:针对可再生能源发电不确定性下的经济调度问题,我们提出了一个两阶段非线性随机公式。每个阶段都对在随后时间段内做出的调度和传输决策建模。某些发电决策仅在第一阶段做出,第二阶段实现实际的可再生发电,其中可再生能源输出的不确定性由有限数量的场景捕获。然后必须使用额外的,高边际成本的电源来缓解任何由此产生的供需不匹配问题,这些电源可以在短时间内分接。我们提出了两种外部逼近算法来解决这一非凸优化问题。我们表明,在某些条件下,在两个备选方案中获得的最优解的序列都有一个极限点,该极限点是原始两阶段非凸程序的全局最优解。进行了各种参数设置的数值实验,以表明该方法在大型实际实例中的效率和可用性。

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