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A two-stage heuristic approach for solving the long-term unit commitment problem with hydro-thermal coordination in large-scale electricity systems

机译:大规模电力系统中水热协调解决长期机组承诺问题的两阶段启发式方法

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Within this study, we consider a long-term planning and scheduling problem for thermal power plants and renewable energy sources, for which a customer demand has to be entirely balanced at minimized operating costs. The problem is enhanced by adding pumped storages, where water is stored in reservoirs, being turbinated, or pumped when necessary. Besides an enhanced tight mixed-integer linear programming model for the well-known unit commitment problem with hydro-thermal coordination, we present a new decomposition methodology. The two-stage decomposition first performs an isolated dispatching of thermal plants using a greedy algorithm, rule-based algorithms, and local optimization steps, followed by a re-optimization stage in order to embed energy storages into the final solution. The iterative two-stage heuristic approach is able to find outstanding feasible schedules for large-scale real-world electricity systems as well as near-optimal solutions for benchmark instances in a few minutes of computation time using a standard PC.
机译:在这项研究中,我们考虑了火力发电厂和可再生能源的长期计划和调度问题,必须以最小的运营成本完全平衡客户需求。通过增加抽水蓄水设施,使水问题更加严重,在水蓄水的情况下,将水储存在水库中,或在必要时将其旋流或抽水。除了针对具有热液协调作用的著名机组承诺问题的增强型紧密混合整数线性规划模型外,我们还提出了一种新的分解方法。两阶段分解首先使用贪心算法,基于规则的算法和局部优化步骤对火力发电厂进行隔离调度,然后进行重新优化阶段以将能量存储嵌入最终解决方案中。迭代的两阶段启发式方法能够使用标准PC在几分钟的计算时间内找到大型现实世界电力系统的出色可行时间表以及基准实例的最佳解决方案。

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