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Optimal sizing of a hybrid grid-connected photovoltaic and wind power system

机译:光伏并网和风电混合系统的最佳尺寸

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Hybrid renewable energy systems (HRES) have been widely identified as an efficient mechanism to generate electrical power based on renewable energy sources (RES). This kind of energy generation systems are based on the combination of one or more RES allowing to complement the weaknesses of one with strengths of another and, therefore, reducing installation costs with an optimized installation. To do so, optimization methodologies are a trendy mechanism because they allow attaining optimal solutions given a certain set of input parameters and variables. This work is focused on the optimal sizing of hybrid grid-connected photovoltaic-wind power systems from real hourly wind and solar irradiation data and electricity demand from a certain location. The proposed methodology is capable of finding the sizing that leads to a minimum life cycle cost of the system while matching the electricity supply with the local demand. In the present article, the methodology is tested by means of a case study in which the actual hourly electricity retail and market prices have been implemented to obtain realistic estimations of life cycle costs and benefits. A sensitivity analysis that allows detecting to which variables the system is more sensitive has also been performed. Results presented show that the model responds well to changes in the input parameters and variables while providing trustworthy sizing solutions. According to these results, a grid-connected HRES consisting of photovoltaic (PV) and wind power technologies would be economically profitable in the studied rural township in the Mediterranean climate region of central Catalonia (Spain), being the system paid off after 18 years of operation out of 25 years of system lifetime. Although the annual costs of the system are notably lower compared with the cost of electricity purchase, which is the current alternative, a significant upfront investment of over $10 M - roughly two thirds of total system lifetime cost - would be required to install such system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:混合可再生能源系统(HRES)已被广泛认为是一种基于可再生能源(RES)产生电力的有效机制。这种能量产生系统基于一个或多个RES的组合,从而可以利用一个或多个RES的缺点来补充另一个的缺点,因此可以通过优化安装来降低安装成本。为此,优化方法是一种流行的机制,因为在给定一组输入参数和变量的情况下,它们可以实现最佳解决方案。这项工作的重点是根据实际每小时风和太阳辐射数据以及某个位置的电力需求,优化混合并网光伏-风能发电系统的规模。所提出的方法能够找到使系统的生命周期成本最小化的规模,同时使电力供应与当地需求相匹配。在本文中,该方法通过案例研究进行了测试,在该案例中,已实施了实际的每小时电力零售价格和市场价格,以获得对生命周期成本和收益的现实估计。还进行了灵敏度分析,可以检测系统对哪些变量更敏感。呈现的结果表明,该模型对输入参数和变量的变化响应良好,同时提供了可信赖的尺寸解决方案。根据这些结果,由光伏(PV)和风能技术组成的并网HRES在加泰罗尼亚中部(西班牙)地中海气候地区的研究农村乡镇中将是经济上有利可图的,因为该系统在18年的使用后已获得回报在系统使用寿命25年内无法运行。尽管与目前的替代电力购买成本相比,该系统的年度成本要低得多,但安装该系统将需要超过1000万美元的大量前期投资,大约占系统使用寿命总成本的三分之二。 (C)2015 Elsevier Ltd.保留所有权利。

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