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Short-term economic emission power scheduling of hydrothermal systems using improved chaotic hybrid differential evolution

机译:基于改进混沌混合差分进化的水热系统短期经济排放功率调度

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utilities to retain their generations within maximum allowable emission levels. Therefore, in present-day power system operations, the minimization of emission pollutants along with the total fuel cost has become an important aspect in short-term generation scheduling of hydrothermal power systems. This paper presents an improved hybrid approach based on the application of chaos theory in a differential evolution (DE) algorithm for the solution of this biobjective constrained optimization problem. In this proposed methodology, self-adjusted parameter setting in DE is obtained by using chaotic sequences. Secondly, a chaotic hybridized local search mechanism is embedded in DE to avoid it from trapping at local optima and to enhance its search space exploring ability. Furthermore, new heuristic strategies are developed to effectively handle the complex hydraulic and thermal constraints. The feasibility and usefulness of the developed approach are demonstrated by its application on a standard hydrothermal test system compromising four multicascaded hydel plants and three thermal plants and the following three case studies are investigated: economic power scheduling, economic emission scheduling, and economic emission power scheduling. The simulation results illustrate the superiority of the proposed approach as compared to other recently established techniques.
机译:公用事业将其发电量保持在最大允许排放水平之内。因此,在当今的电力系统运行中,将排放污染物和总燃料成本减到最少已成为水火发​​电系统短期发电调度中的重要方面。本文提出了一种基于混沌理论在差分进化算法中的改进混合方法,用于解决该双目标约束优化问题。在该提出的方法中,通过使用混沌序列来获得DE中的自调整参数设置。其次,在DE中嵌入了一种混沌的混合局部搜索机制,以避免陷入局部最优状态,增强了其搜索空间的探索能力。此外,还开发了新的启发式策略来有效处理复杂的液压和热约束。该方法在标准的水热试验系统上的应用证明了该方法的可行性和实用性,该系统破坏了四个多级Hydel电厂和三个热电厂,并研究了以下三个案例研究:经济功率调度,经济排放调度和经济排放功率调度。仿真结果说明了与其他最近建立的技术相比,该方法的优越性。

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