基于鲸鱼优化算法的燃料电池热电联产可再生并网微网多目标最优经济调度

S. Prakash, N. Kumarappan
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引用次数: 1

摘要

微电网是将分布式能源与热电联产机组相结合,以满足系统电力和热量需求的实用解决方案。目前,为了整合可再生能源和不可再生能源,如光伏、风力涡轮机、热电联产系统和燃料电池装置;微电网似乎是个好主意。本文的目标是在考虑并网和自主运行方式的影响并满足运行约束的情况下,通过经济/环境的电力调度,获得拟建发电机组的最优调度,降低系统的总运行成本和净排放。本文采用一种新的鲸鱼优化算法来解决这一多目标问题。与其他优化技术相比,本文提出的鲸鱼优化算法所获得的最优结果,体现了该算法有效处理非线性优化问题的效率、可行性和能力。所提出的系统在24小时的时间范围内进行了研究。并将该方法得到的结果与最近采用的其他方法进行了比较。
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Multi-Objective Optimal Economic Dispatch of a Fuel Cell and Combined Heat and Power Based Renewable Integrated Grid Tied Micro-grid Using Whale Optimization Algorithm
Micro-grids are practical solution for combining distributed energy resources and combined heat and power units in order to satisfy the system power and heat demands. Nowadays, in order to integrate both renewable and non-renewable energy resources like photovoltaic, wind turbine, combined heat and power systems and fuel-cell unit; micro-grid seems to be a good idea. The aim of this paper is to obtain optimal scheduling of proposed generating units and to reduce the total operational cost and net emission of the system through economic/environmental power dispatch, while considering the impact of grid tied and autonomous mode of operation and satisfying the operational constraints. In this paper, a novel whale optimization algorithm is employed to solve this multi-objective problem. The obtained optimal results through this proposed whale optimization algorithm represents the efficiency, feasibility and capability of handling non-linear optimization problems in an efficient way compared to other optimization techniques. The proposed system is studied in a 24-h time horizon. The results obtained from this proposed technique are compared with other techniques which are recently employed.
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