Short-term optimal hydrothermal scheduling problem considering power flow constraint

Jingrui Zhang, Shuang Lin, Xiangxiang Zeng, Qinghui Tang
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引用次数: 5

Abstract

Short-term optimal hydrothermal scheduling problem is one of the most popular research issues in power systems optimization. A novel mathematical model of the short-term optimal hydrothermal scheduling is proposed in this paper. This model aims at minimizing the total fuel cost of the thermal generating units while satisfying the various constraints such as power balance, water balance, transmission network and other system's constraints. A modified differential evolution algorithm is also introduced to solve the short-term optimal hydrothermal scheduling problem. In the proposed approach, an operation of migration and a self-adaptive mechanism are presented to improve the searching efficiency. Moreover, four constraint handling rules are proposed to handle the complex constraints of short-term optimal hydrothermal scheduling problem. An IEEE nine buses test system is applied to verify the proposed mathematic model and algorithm. The numerical results show the feasibility and efficiency of the proposed approach to the short-term optimal hydrothermal scheduling problem.
考虑潮流约束的短期热液最优调度问题
短期热液优化调度问题是电力系统优化研究的热点问题之一。本文提出了一种新的短期热液优化调度数学模型。该模型的目标是在满足功率平衡、水量平衡、输电网等系统约束的同时,使火力发电机组的总燃料成本最小。提出了一种改进的差分进化算法来解决短期热液最优调度问题。在该方法中,提出了一种迁移操作和一种自适应机制来提高搜索效率。针对短期热液最优调度问题的复杂约束,提出了4条约束处理规则。应用IEEE九总线测试系统对所提出的数学模型和算法进行了验证。数值计算结果表明了该方法解决短期热液最优调度问题的可行性和有效性。
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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