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An optimum forceful generation scheduling and unit commitment of thermal power system using sine cosine algorithm

机译:使用正弦余弦算法的热力系统的最佳生成调度与单位承诺

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Conventional thermal power system-based units and its participation schedule known as unit commitment problem (UCP) is a significant and stimulating undertaking of allocating generated power among the dedicated units subject to numerous restrictions above a scheduled time prospect to obtain the slightest generation cost. This problem becomes further more complex by increasing the size of the power system. Since unit commitment problem is link optimization problem as it has both binary and continuous variable that is why it is most challenging problem to solve. In this paper, a recently invented optimizer sine-cosine is used to solve unit commitment problem. Sine cosine algorithm (SCA) is an innovative population centered optimization algorithm that has been used for solving the unit commitment optimization problems bounded by some constraints centered on the concept of a mathematical model of the sine and cosine functions. This paper offers the solution of unit commitment optimization problems of the electric power system by using the SCA, as UCP is linked optimization as it has both binary and continuous variables, the strategy adopted to tackle both variables is different. In this paper, proposed sine cosine algorithm searches allocation of generators (units that participate in generation to take upload) and once units are decided, allocation of generations (economic load dispatch) is done by mixed integer quadratic programming. The feasibility and efficacy of operation of SCA algorithm are verified for small- and medium-power systems, in which results for 4 unit, 5 unit, 6 unit, 7 unit, 10 units, 19 unit, 20 unit and 40 units are evaluated. The 10 generating units are evaluated with 5% and 10% spinning reserve. The results obviously show that the suggested method gives the superior type of solutions as compared to other algorithms.
机译:传统的基于热功率系统的单位及其称为单位承诺问题(UCP)的参与计划是一个重要的和刺激在专用单元之间分配产生的功率,其受到高于预定时间前景的许多限制以获得丝毫的产生成本。通过增加电力系统的大小,该问题变得更加复杂。由于单位承诺问题是链接优化问题,因为它具有二进制和连续变量,这就是为什么它是最具挑战性的问题。在本文中,最近发明的优化器正弦余弦用于解决单位承诺问题。正弦余弦算法(SCA)是一种创新的人口中心优化优化算法,用于解决由符合在正弦和余弦功能的数学模型的概念上的某些约束限制的单位承诺优化问题。本文通过使用SCA提供了电力系统的单位承诺优化问题的解决方案,因为UCP是链接优化,因为它具有二进制和连续变量,所采用的策略是不同的。在本文中,所提出的正弦余弦算法搜索发电机的分配(参与发电的单位上传),一旦确定单位,几代(经济负载调度)通过混合整数二次编程完成。 SCA算法操作的可行性和功效对于小型和中型电源系统验证,其中4单元,5单元,6单元,7单元,10单元,19单元,20单元和40单元进行评估。通过5%和10%的纺纱储备来评估10个发电机。结果显然表明,与其他算法相比,建议的方法提供了卓越的解决方案。

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