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Constrained unit commitment based power generation dispatching with integration of PHEVs

机译:结合PHEV的基于约束单元承诺的发电调度

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In this paper, presents a metaheuristics technique quasi reflected oppositional heat transfer search (QROHTS) algorithm for solve the generation scheduling of thermal units integrated with plug-in hybrid electric vehicles (PHEVs) in an electrical power system to optimize fuel cost (FC) and emissions. Heat transfer search algorithm's mechanism is inspired by thermal equilibrium can be used to derive effective mechanisms for searching in a high-dimensional solution space. As algorithms are population based so enables to provide improved solution with integration of powerful techniques. In this paper, such a powerful technique named opposite based learning techniques (OBLT) is integrated with HTS algorithm. OBLT provides enough strength to HTS algorithm to gain a better approximation for both current and opposite population at the same time, as it provides a solution which is nearer solution from optimal based from starting by checking both solutions. Thermal unit scheduling with PHEV problem is a nonlinear, nonconvex, discrete, complex and constrained optimization problem. To verify the effectiveness of the proposed QROHTS algorithm is applied to IEEE 10 thermal unit test systems in a 24-hour load scheduling horizon. To investigate the impacts of plug-in hybrid electric vehicles on generation scheduling. The results obtained from simulation analysis show a significant techno-economic saving.
机译:在本文中,提出了一种元启发式技术准反射对立换热搜索(QROHTS)算法,用于解决与插电式混合动力汽车(PHEV)集成的电力系统中的热电单元的发电调度,以优化燃料成本(FC)和排放。传热搜索算法的机理是受热平衡启发的,可用于推导在高维解空间中进行搜索的有效机理。由于算法是基于人群的,因此可以通过集成强大的技术来提供改进的解决方案。本文将这种强大的技术称为基于对立的学习技术(OBLT)与HTS算法集成在一起。 OBLT为HTS算法提供了足够的强度,可同时针对当前种群和相反种群获得更好的近似值,因为它提供了一种解决方案,从通过检查这两个解开始开始,与最优解更接近。带有PHEV问题的热力机组调度是一个非线性,非凸,离散,复杂且受约束的优化问题。为了验证所提出的QROHTS算法的有效性,将其应用于24小时负载调度范围内的IEEE 10热单元测试系统。研究插电式混合动力汽车对发电计划的影响。从模拟分析中获得的结果表明,该技术节省了可观的成本。

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