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A novel differential evolution application to short-term electrical power generation scheduling

机译:新型差分进化在短期发电调度中的应用

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This paper proposes a new way of applying a differential evolution algorithm to short-term electrical power generation scheduling. Traditionally, the problem is divided into two subproblems. An evolutionary algorithm, which works with binary decision variables, is applied to the first subproblem to find a low cost scheduling of power generators, satisfying some operational constraints. Then, the lambda-iteration method, is used to calculate the power generated by the online generators. In this study, the problem is treated as a whole for the first time in literature and an application of a real-valued differential evolution algorithm is proposed. This approach eliminates the use of an iterative local search technique such as lambda-iteration in all solution evaluations. Through comparisons with results from literature, it is shown that the proposed method achieves a similar solution quality to existing methods, without needing the time consuming lambda-iteration step. Finally, the new approach is applied to real-world data from the Turkish interconnected power network.
机译:本文提出了一种将差分进化算法应用于短期发电调度的新方法。传统上,该问题分为两个子问题。将演化算法与二进制决策变量一起使用,将其应用于第一个子问题,以找到满足某些运行约束的发电机的低成本调度。然后,使用lambda迭代法计算在线发电机产生的功率。在这项研究中,该问题在文献中首次被整体考虑,并提出了一种实值差分演化算法的应用。这种方法消除了在所有解决方案评估中使用迭代局部搜索技术(例如lambda迭代)的麻烦。通过与文献结果的比较,表明所提出的方法可以实现与现有方法相似的解决方案质量,而无需耗时的lambda迭代步骤。最后,新方法被应用于来自土耳其互联电网的真实数据。

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