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Power flow based hydro-thermal-wind scheduling of hybrid power system using sine cosine algorithm

机译:基于正弦余弦算法的基于潮流的混合动力系统水热风调度

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摘要

Different types of optimization techniques are being applied in hydrothermal scheduling (HTS) problem for optimizing fuel cost, emission and combined cost emission. Usage of fossil fuel for thermal power generation increases global warming and environment pollution. In this work, environment friendly, clean energy such as wind energy, has been integrated with the HTS problem to overcome the effect of thermal pollution and to reduce generation cost. A novel sine cosine algorithm (SCA) has been implemented to minimize generation cost and fuel emission. The different control parameters of the SCA have been properly utilized to balance the exploration and the exploitation phases leading to find out near global optimal solution. To study its performance and efficiency, SCA has been applied to solve different cases (ie., economic load scheduling, economic emission scheduling, combined economic emission scheduling) of HTS and hydrothermal wind scheduling (HTWS) problems. Furthermore, optimal power flow (OPF) based HTWS is studied for a standard 9-bus system. Results offered by some newly surfaced algorithms (like teaching learning-based optimization, gravitational search algorithm, real-coded genetic algorithm etc.) have been compared with those offered by the SCA to establish its effectiveness. Utility of wind energy in scheduling problem has been proposed in this work.
机译:不同类型的优化技术正在热液调度(HTS)问题中应用,以优化燃料成本,排放和组合成本排放。化石燃料用于火力发电会加剧全球变暖和环境污染。在这项工作中,将环境友好的清洁能源(例如风能)与高温超导问题结合在一起,以克服热污染的影响并降低发电成本。一种新颖的正弦余弦算法(SCA)已被实施以最小化发电成本和燃料排放。 SCA的不同控制参数已得到适当利用,以平衡勘探和开发阶段,从而找到接近全局的最佳解决方案。为了研究其性能和效率,SCA已用于解决HTS和热液风调度(HTWS)问题的不同情况(即经济负荷调度,经济排放调度,组合经济排放调度)。此外,针对标准的9总线系统研究了基于最优功率流(OPF)的HTWS。一些新出现的算法(例如基于教学学习的优化,重力搜索算法,实数编码遗传算法等)提供的结果已与SCA提供的结果进行了比较,以确定其有效性。这项工作提出了风能在调度问题中的效用。

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