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A novel framework for optimal design of hybrid renewable energy-based autonomous energy systems: A case study for Namin, Iran

机译:基于混合可再生能源的自主能源系统优化设计的新框架:以伊朗纳明为例

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摘要

An optimization model is developed to determine the most advantageous size of autonomous hybrid photovoltaic/wind turbine/fuel cell, wind turbine/fuel cell and photovoltaic/fuel cell systems for electrification of a remote area involving five homes (1 block) located in Namin, Ardabil, Iran. The model is developed based on three decision variables related to the system renewable energy components: number of storage tanks, total swept area by the rotating turbine blades and total area occupied by the set of photovoltaic panels. The former is an integer decision variable, while the latter two are continuous decision variables. All the components are modeled and an objective function is defined based on minimizing the life cycle cost and satisfying the maximum allowable loss of power supply probability. To determine optimal values of the variables that satisfy the load in the most cost-effective way, the use of simulated annealing and a combination of simulated annealing with harmony search and chaotic search is proposed. The simulation results indicate that the grid-independent hybrid photovoltaic/wind turbine/fuel cell system is the most cost-effective for supplying the block's electrical energy demands and that the simulated annealing-based harmony search algorithm yields more promising results than the other algorithms. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了一种优化模型来确定自主混合光伏/风力涡轮机/燃料电池,风力涡轮机/燃料电池和光伏/燃料电池系统最有利的规模,以使位于Namin的五个房屋(1块)的偏远地区电气化,伊朗,阿尔达比勒。该模型是基于与系统可再生能源组件相关的三个决策变量开发的:储罐数量,旋转的涡轮叶片扫过的总面积以及光伏板组所占据的总面积。前者是整数决策变量,而后两个是连续决策变量。所有组件都经过建模,并基于最小化生命周期成本并满足最大允许的供电概率损失来定义目标函数。为了以最经济有效的方式确定满足负载的变量的最优值,提出了使用模拟退火以及将模拟退火与和声搜索和混沌搜索相结合的方法。仿真结果表明,与电网无关的混合光伏/风轮机/燃料电池系统在满足该区块的电能需求方面是最具成本效益的,并且基于模拟退火的和声搜索算法比其他算法产生的结果更为可观。 (C)2016 Elsevier Ltd.保留所有权利。

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