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A Matheuristic Algorithm for a Large-Scale Energy Management Problem

机译:大规模能源管理问题的数学算法

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The demand for electrical energy is globally growing very quickly. For this reason, the optimization of power plant productions and power plant maintenance scheduling have become important research topics. A Large Scale Energy Management (LSEM) problem is studied in this paper. Two types of power plants are considered: power plants of type 1 can be refueled while still operating. Power plants of type 2 need to be shut down from time to time, for refueling and ordinary maintenance (these are typically nuclear plants). Considering these two types of power plants, LSEM is the problem of optimizing production plans and scheduling of maintenances of type 2 plants, with the objective of keeping the production cost as low as possible, while fulfilling the customers demand. Uncertainty about the customers demand is taken into account in the model considered. In this article, a matheuristic optimization approach based on problem decomposition is proposed. The approach involves mixed integer linear programming and simulated annealing optimization methods. Computational results on some realistic instances are presented.
机译:全球对电能的需求增长非常迅速。因此,发电厂生产的优化和发电厂维护计划已成为重要的研究课题。本文研究了大型能源管理(LSEM)问题。考虑了两种类型的发电厂:类型1的发电厂可以在仍在运行时进行加油。类型2的发电厂需要不时关闭,以进行加油和常规维护(通常是核电厂)。考虑到这两种类型的发电厂,LSEM是优化2型发电厂的生产计划和维护计划的问题,目的是在满足客户需求的同时保持尽可能低的生产成本。在考虑的模型中考虑了客户需求的不确定性。本文提出了一种基于问题分解的数学优化方法。该方法涉及混合整数线性规划和模拟退火优化方法。给出了一些实际实例的计算结果。

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