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首页> 外文期刊>International journal of hydrogen energy >Standalone solar-hydrogen systems powering Fire Contingency Networks
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Standalone solar-hydrogen systems powering Fire Contingency Networks

机译:为火灾应急网络供电的独立太阳能系统

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摘要

This paper presents a case study of a standalone fire-emergency telecommunications site in southeastern Australia to compare the relative merits of a solar-hydrogen power supply system and a conventional PV-battery system with and without diesel generator back-up. Although the power units for such applications are usually small (i.e. less than 5 kW) with relatively small capital costs, their operating and maintenance (O&M) costs can contribute considerably towards the total lifecycle cost of the system, particularly for isolated sites with limited accessibility, where frequent maintenance visits are required. Solar-hydrogen systems were found to be a more economical option on a lifecyde cost basis than traditionally-used PV-batteries (both with and without diesel generator back-up) mainly due to the inherent low O&M costs of the system. This research also found that adding a small battery bank to the solar-hydrogen system offers opportunities to improve the reliability and efficiency of the system while maintaining the economics of the system almost at the same level as that for solar-hydrogen systems. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文以澳大利亚东南部的一个独立的消防应急通信站点为例,比较了太阳能-氢电源系统和具有或不具有柴油发电机后备电源的常规光伏电池系统的相对优势。尽管用于此类应用的功率单元通常较小(即小于5 kW),且投资成本相对较低,但其操作和维护(O&M)成本可对系统的总生命周期成本做出重大贡献,尤其是对于那些可访问性有限的偏远地区,需要经常进行维护访问。从生命周期成本的角度来看,发现太阳能氢系统比传统使用的PV电池(有或没有柴油发电机备用)更经济,主要是因为该系统固有的低运维成本。这项研究还发现,在太阳能氢系统中增加一个小的电池组,可以提供提高系统可靠性和效率的机会,同时又可以将系统的经济性保持在与太阳能氢系统几乎相同的水平。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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