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Economic sizing of a hybrid (PV-WT-FC) renewable energy system (HRES) for stand-alone usages by an optimization-simulation model: Case study of Iran

机译:通过优化模拟模型对单机使用的混合(PV-WT-FC)可再生能源系统(HRES)进行经济估算:伊朗的案例研究

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摘要

Hybrid renewable energy systems, combining various kinds of technologies, have shown relatively high capabilities to solve reliability problems and have reduced cost challenges. The use of hybrid electricity generation/storage technologies as off-grid stand-alone systems is reasonable to overcome related shortcomings. Solar and wind energy are two rapidly emerging renewable ones that have precedence in comparison to the other kinds. In this regard, the present paper studies four specific locations in Iran, which are candidates for research centers. Based on the solar radiation and average wind speed maps, techno-economically optimized systems are designed by simulating behavior of various combinations of renewable energy systems with different sizing, including wind turbine (WT), photovoltaic (PV), fuel cell (FC), and battery banks. According to the results obtained by a computer program, it is concluded that the hybrid systems including WT and PV with battery backup are less costly compared to the other systems. Moreover, we found that among non-hybrid systems, in most regions of Iran's territory PVs are more economical than WTs. Despite of its advantages, FC has not been applied in the optimal systems due to its high initial cost and its low replacement life. (c) 2015 Elsevier Ltd. All rights reserved.
机译:混合了各种技术的混合可再生能源系统已经显示出较高的能力来解决可靠性问题并降低了成本挑战。混合发电/存储技术作为离网独立系统的使用是合理的,可以克服相关的缺点。太阳能和风能是两种迅速兴起的可再生能源,相对于其他种类而言,它们具有更高的优先级。在这方面,本文研究了伊朗的四个具体地点,它们是研究中心的候选人。根据太阳辐射和平均风速图,通过模拟具有不同尺寸的可再生能源系统的各种组合(包括风力涡轮机(WT),光伏(PV),燃料电池(FC),和电池组。根据计算机程序获得的结果,可以得出结论,与其他系统相比,包括WT和PV并带有备用电池的混合系统的成本更低。此外,我们发现,在非混合动力系统中,伊朗领土上的大多数地区的PV比WT更为经济。尽管有其优点,但由于燃料电池的初始成本高,更换寿命短,因此尚未应用于最佳系统。 (c)2015 Elsevier Ltd.保留所有权利。

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