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Application of Lighter-Than-Air Platforms for Power Beaming, Generation and Communications

机译:轻巧平台在功率传输,发电和通信中的应用

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Retail power beaming using millimeter waves offers a rapid way to bring electric power to areas such as rural India where the terrestrial wired grid lags the demand for communications, connectivity and other services. Synergy between infrastructure development for communications and for power allows local, regional and global power exchange. This helps to bring renewable power generation devices of all scales into a seamless grid including space-based, stratospheric, low-altitude, and surface infrastructure. This paper presents a conceptual study of how lighter-than-air platforms (LTA) including uninhabited, remoted controlled or autonomous aerostats and airships, may be used for the above purpose. The paper highlights the synergistic application of LTA systems to the delivery of power, generation of a small amount of power, and provision of low-cost communications systems in remote areas. Significant experience has already been accumulated in using LTA systems in India for various purposes. Wind patterns drive the optimum altitude for a self-propelled LTA above 21,000 m, suitable for large stratospheric platforms. Altitudes above 4000 m would enable a tethered LTA to convey millimeter wave power through a wave guide integrated into the tether, tunneling through the high-loss regions of the atmosphere. The millimeter wave power beaming application requires demonstration of the projected antenna mass and other parameters. Tethered aerostats, autonomous powered airships and very high altitude platforms all offer excellent opportunities. Initial sizing explorations show feasible solution spaces.
机译:使用毫米波的零售电力发射提供了一种快速的方法,可以将电力输送到印度农村等地区,在这些地区,地面有线电网的通信,连接性和其他服务需求滞后。通信和电力基础设施开发之间的协同作用可以实现本地,区域和全球电力交换。这有助于将各种规模的可再生能源发电设备带入无缝电网,包括天基,平流层,低空和地面基础设施。本文提出了一种概念性的研究,即如何将包括无人居住,远程控制或自治的自动浮空器和飞艇在内的空空平台(LTA)用于上述目的。本文着重介绍了LTA系统在电力输送,少量电力生产以及在偏远地区提供低成本通信系统方面的协同应用。在印度将LTA系统用于各种目的已经积累了丰富的经验。风型驱动的自行式LTA的最佳高度超过21,000 m,适用于大型平流层平台。 4000 m以上的海拔高度将使拴系的LTA能够通过集成到拴系中的波导传输毫米波功率,从而在大气层的高损耗区域中形成隧道。毫米波功率发射应用需要演示预计的天线质量和其他参数。系留浮空器,自动驾驶飞艇和超高海拔平台都提供了绝佳的机会。初步的规模探索显示了可行的解决方案空间。

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