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Multiobjective economic-environmental power dispatch with stochastic wind-solar-small hydro power

机译:随机风电-小水电的多目标经济-环境电力调度

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Economic-environmental power dispatch is one of the most popular bi-objective non-linear optimization problems in power system. Classical economic power dispatch problem is formulated with only thermal generators often ignoring security constraints of the network. But importance of reduction in emission is paramount from environmental sustainability perspective and hence penetration of more and more renewable sources into the electrical grid is encouraged. However, most common forms of renewable sources are intermittent and uncertain. This paper proposes multiobjective economic emission power dispatch problem formulation and solution incorporating stochastic wind, solar and small hydro (run-of-river) power. Weibull, lognormal and Gumbel probability density functions are used to calculate available wind, solar and small-hydro power respectively. Some conventional generators of the standard IEEE 30-bus system are replaced with renewable power sources for study purpose. Network security constraints such as transmission line capacities and bus voltage limits are also taken into consideration alongwith constraints on generator capabilities and prohibited operating zones for the thermal units. Decomposition based multiobjective evolutionary algorithm and summation based multiobjective differential evolution algorithm are applied to the problem under study. An advanced constraint handling technique, superiority of feasible solutions, is integrated with both the multi objective algorithms to comply with system constraints. The simulation results of both the algorithms are summarized, analyzed and compared in this study. (C) 2018 Elsevier Ltd. All rights reserved.
机译:经济-环境电力调度是电力系统中最流行的双目标非线性优化问题之一。经典的经济动力分配问题仅由热力发电机提出,而经常忽略网络的安全约束。但是从环境可持续性的角度来看,减少排放的重要性至关重要,因此,鼓励越来越多的可再生能源渗透到电网中。然而,最常见的可再生能源形式是间歇性的和不确定的。本文提出了包含随机风能,太阳能和小型水力(河道)电力的多目标经济排放电力调度问题的公式和解决方案。 Weibull,对数正态和Gumbel概率密度函数分别用于计算可用的风能,太阳能和小水电。为了研究目的,标准的IEEE 30总线系统的一些常规发电机被可再生电源替代。还考虑了网络安全性约束,例如传输线容量和母线电压限制,以及对发电机功能和热单元禁止运行区域的约束。基于分解的多目标进化算法和基于求和的多目标差分进化算法被应用于研究中的问题。先进的约束处理技术(可行解决方案的优势)已与两种多目标算法集成在一起,以符合系统约束。本文对两种算法的仿真结果进行了总结,分析和比较。 (C)2018 Elsevier Ltd.保留所有权利。

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