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Sizing of a solar-hydrogen power source for a portable emergency communication system: Case study of hurricanes in Cancun, Mexico

机译:便携式应急通信系统的太阳能氢电源的尺寸:墨西哥坎昆飓风的案例研究

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Nowadays, society and the economy largely depend on wireless communications because they allow freedom of human activities from spatial and temporal restrictions. To add mobility to this communication technology type, portable communication networks can be implemented to achieve this aim as well as to provide ubiquitous coverage in emergency circumstances. In accordance with the above-mentioned points, we study a photovoltaic-hydrogen system (PVS-H2) for a portable emergency communication system (PECS), which operates in a mobile ad-hoc mesh network. As a case study, a theoretical application on the effects of two hurricanes per year in Cancun, Mexico using real weather data and random dates is presented. A power system was sized to cope with hypothetical emergency communication scenarios. The results show that the PVS-H2 can operate during two hurricanes with an efficacy of 79.14% and a standard deviation of 0.96%. According to the results, the analysis strategy can determine the best configuration to avoid oversizing or undersizing with a small standard deviation. The obtained sizing result ensures that the PVS-H2 supplies adequate energy for the PECS. Copyright (c) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:如今,社会和经济很大程度上依赖无线通信,因为它们使人类活动不受空间和时间限制。为了向这种通信技术类型增加移动性,可以实现便携式通信网络以实现该目标以及在紧急情况下提供普遍覆盖。根据上述要点,我们研究了用于便携式应急通信系统(PECS)的光伏氢系统(PVS-H2),该系统在移动自组织网状网络中运行。作为案例研究,提出了使用实际天气数据和随机日期对墨西哥坎昆每年两次飓风的影响的理论应用。调整电源系统的大小以应付假设的紧急通信情况。结果表明,PVS-H2可以在两次飓风中运行,效率为79.14%,标准偏差为0.96%。根据结果​​,分析策略可以确定最佳配置,以避免尺寸过大或尺寸小的标准偏差。所获得的尺寸确定结果可确保PVS-H2为PECS提供足够的能量。 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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