A Fast Algorithm for Optimal Power Scheduling of Large-Scale Appliances with Temporally-Spatially Coupled Constraints

Zhenwei Guo, Qinmin Yang, Zaiyue Yang
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引用次数: 3

Abstract

The scheduling of appliance power consumption is one of the main tasks in demand response management in smart grids. In many scenarios, it requires us to optimally schedule a large number of appliances with limited computational resources, thus the computational efficiency becomes a major concern of algorithm design. To this end, a novel algorithm is proposed based on KKT conditions to solve the optimal power scheduling problem with temporally-spatially coupled constraints. We show the algorithm is much more efficient than conventional algorithms, e.g., dual decomposition, and less sensitive to the problem parameter setting, as verified by numerical examples.
具有时间-空间耦合约束的大型电器最优调度快速算法
智能电网用电调度是智能电网需求响应管理的主要任务之一。在很多场景下,它需要我们以有限的计算资源对大量设备进行优化调度,因此计算效率成为算法设计的主要关注点。为此,提出了一种基于KKT条件的求解具有时空耦合约束的电力最优调度问题的新算法。通过数值算例验证了该算法比对偶分解等传统算法效率更高,且对问题参数设置的敏感性较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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