SoPTAS: Solar powered tethered aerostat system

Kalpesh M. Gajra, R. Pant
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引用次数: 8

Abstract

Emergency situations like natural calamities generally disrupt power supply, which hinders the relief and rehabilitation operations. Post disaster, one of the most immediate and important need is to setup a communications network, which is not feasible by conventional means. This paper describes the design of working prototype of a totally self-contained and easily re-locatable system, which can provide necessary power for communication equipment. The power will be generated by solar panels mounted on the top of the envelope of an aerostat, which is an aerodynamically shaped balloon filled with a lighter-than-air gas, and is tethered to the ground. The entire system will be mounted on the chassis of a truck or trailer, to make it easily re-locatable. In this study, a commercially available, light-weight flexible amorphous silicon solar panel with a peak power output of 64 W was procured and tested. A prototype aerostat envelope was fabricated, and a provision was made for integration of the solar panel on the top of the envelope, with a thermal insulation layer. The envelope was leak tested and an existing winching system for ground handling of the system was readied. The technical feasibility of this system has been established via the conceptual design, sizing and fabrication of a working prototype.
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太阳能系留浮空器系统
自然灾害等紧急情况通常会扰乱电力供应,从而妨碍救济和恢复工作。灾后最迫切和最重要的需求之一是建立通信网络,这是传统手段无法实现的。本文介绍了一种可以为通信设备提供必要电源的、完全独立的、易于重新定位的系统的工作样机的设计。电力将由安装在浮空器外壳顶部的太阳能电池板产生。浮空器是一个空气动力学形状的气球,里面装满了比空气轻的气体,并与地面相连。整个系统将安装在卡车或拖车的底盘上,使其易于重新定位。在本研究中,获得并测试了一种市售的轻量化柔性非晶硅太阳能电池板,其峰值输出功率为64 W。制作了一个原型浮空器外壳,并为外壳顶部的太阳能电池板与隔热层的集成做出了规定。对外壳进行了泄漏测试,并为该系统的地面处理准备了现有的绞车系统。该系统的技术可行性已通过概念设计,尺寸和工作样机的制造。
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