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Optimal sizing of a mini-grid in developing countries, taking into account the operation of an electrochemical storage and a fuel tank

机译:考虑到电化学存储器和燃料箱的运行,在发展中国家优化微电网的尺寸

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Nowadays, mini-grids can provide reliable and cheap electricity also to far communities of developing countries. Diesel generators can ensure backup power, in addition to renewable sources and energy storage devices. However, poor infrastructures, severe weather conditions and a difficult procurement chain can strongly influence the fuel delivery, thus reducing the continuity of supply. The present paper proposes a stochastic method to optimize the design of a rural mini-grid composed by a photovoltaic plant, a lithium battery, a diesel generator and a fuel tank. The fuel procurement strategy and its mathematical model are also discussed and simulated. A Particle Swarm Optimization (PSO) procedure is applied to the optimal sizing of components, in combination with a Monte Carlo technique aimed to handle the uncertainties of fuel delivery, irradiance and load. A case study for a possible mini-grid in Uganda is discussed, also performing a sensitivity analysis of the results with respect to the fuel delivery time, the fuel price and the cost of load curtailment.
机译:如今,微型电网还可以向发展中国家的广大社区提供可靠而廉价的电力。柴油发电机除可再生能源和储能设备外,还可以确保备用电源。但是,不良的基础设施,恶劣的天气条件和困难的采购链会严重影响燃料的输送,从而降低了供应的连续性。本文提出了一种随机方法,以优化由光伏电站,锂电池,柴油发电机和燃料箱组成的农村微型电网的设计。还讨论并模拟了燃料采购策略及其数学模型。粒子群优化(PSO)程序与用于处理燃料输送,辐照度和负载不确定性的蒙特卡洛技术相结合,被应用于部件的最佳尺寸。讨论了一个在乌干达可能的微型电网的案例研究,还对结果进行了敏感性分析,包括燃料输送时间,燃料价格和削减负荷成本。

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