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A MILP model to design hybrid wind-photovoltaic isolated rural electrification projects in developing countries

机译:一个MILP模型,用于设计发展中国家的混合风光光伏隔离农村电气化项目

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摘要

Electrification systems based on the use of renewable energy sources are a suitable option for providing electricity to isolated communities autonomously. Wind and hybrid wind-photovoltaic (PV) systems are increasingly getting attention. To electrify scattered communities, designs that combine individual systems and microgrids have recently proven advantageous. In this paper we present a mathematical programming model to optimize the design of hybrid wind-PV systems that solves the location of the wind-PV generators and the design of the microgrids, taking into account the demand of the consumption points and the energy potential. The criterion is the minimization of the initial investment cost required to meet the demand. The proposed hybrid model is tested with realistic size instances and results show the instances are efficiently solved. Moreover, the model is applied to real case studies in Peru; obtained results verify that the hybrid model efficiently finds solutions that significantly reduce costs.
机译:基于使用可再生能源的电气化系统是自动向偏远社区供电的合适选择。风力和混合风力光伏(PV)系统越来越受到关注。为了使分散的社区通电,最近已证明结合了单个系统和微电网的设计是有利的。在本文中,我们提出了一种数学编程模型来优化混合风力光伏系统的设计,该模型考虑了消耗点的需求和能量潜力,解决了风力光伏发电机的位置和微电网的设计。标准是满足需求所需的初始投资成本最小化。对提出的混合模型进行了实际尺寸实例测试,结果表明实例得到了有效解决。此外,该模型还用于秘鲁的实际案例研究;获得的结果证明了混合模型可以有效地找到可显着降低成本的解决方案。

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