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Experiences with back-up PV system for remote rescue application

机译:具有用于远程救援应用的备用光伏系统的经验

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In order to disseminate photovoltaic (PV) technologies into remote rescue applications in Taiwan, a feasibility study on grid-tie PV System with battery back-up was done. A 3.2kWp back-up PV system has been installed in a remote police station (22°44′59.46″N, 120°43′38.83″E) located in the mountain region of southern Taiwan. In this paper, the design and the operational results of this PV system will be presented. This system was designed with autonomous operation of 5 days. From the actual operation experiences, it is shown that the output of the system can satisfied the demands of the emergent loads in blackout period. The DC daily mean yield was 9.01kWh/day (2.8kWh/day/kWp) during 09/18/2010∼4/30/2012, which satisfied the emergent need of 7.48kWh/day. The performance ratio (PR) was 72.8% during 12/01/2010∼ 04/30/2012 and the biggest loss was due to the maximum power point (MPP) mismatch, accounted for a 9.45% at the same period. This PV system worked very well during the attack of Typhoon Fanapi and supplied power for the mobile phones, radio communications, office lighting and rescue equipments during the blackout of 10 days.
机译:为了将光伏技术推广到台湾的远程救援应用中,对带有备用电池的并网光伏系统进行了可行性研究。在台湾南部山区的偏远警察局(北纬22°44′59.46″,东经120°43′38.83″)中安装了3.2kWp备用光伏系统。在本文中,将介绍该光伏系统的设计和运行结果。该系统设计为具有5天的自主运行时间。从实际运行经验可以看出,系统的输出可以满足停电期紧急负载的需求。在2010年9月18日至2012年4月30日,直流平均日发电量为9.01kWh /天(2.8kWh /天/ kWp),满足了7.48kWh /天的紧急需求。在2010年12月1日至2012年4月30日期间,性能比(PR)为72.8%,最大的损失是由于最大功率点(MPP)不匹配所致,占同期的9.45%。该光伏系统在台风“范纳比”袭击中表现良好,在停电10天期间为移动电话,无线电通讯,办公室照明和救援设备供电。

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