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首页> 外文期刊>IEEE Transactions on Green Communications and Networking >Battery-Aware Contact Plan Design for LEO Satellite Constellations: The Ulloriaq Case Study
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Battery-Aware Contact Plan Design for LEO Satellite Constellations: The Ulloriaq Case Study

机译:Leo卫星星座的电池感知联系计划设计:Ulloriaq案例研究

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摘要

Power demands of communication technologies between LEO small-satellites are difficult to counterbalance by solar infeed and on-board battery storage, due to size and weight limitations. This makes the problem of battery-powered inter-satellite communication a very difficult one. Its management requires a profound understanding as well as techniques for a proper extrapolation of the electric power budget as part of the inter-satellite and satellite-to-ground communication design. We discuss how the construction of contact plans in delay tolerant networking can profit from a sophisticated model of the on-board battery behavior. This model accounts for both nonlinearities in battery behavior as well as stochastic fluctuations in charge, so as to control the risk of battery depletion. We take an hypothetical Ulloriaq constellation based on the GOM X-4 satellites from GomSpace as a reference for our studies.
机译:由于尺寸和重量限制,Leo小卫星之间的通信技术之间的通信技术的需求难以抵消。这使得电池供电的卫星间通信的问题非常困难。其管理需要深切了解以及作为卫星间和地面通信设计的一部分的电力预算的适当外推的技术。我们讨论如何在延迟宽容网络中建造联系计划可以从车载电池行为的复杂模型中获利。该模型占电池行为中的非线性以及随机波动,以控制电池耗尽的风险。我们根据来自Gomspace的GOM X-4卫星获取假设的UlloriaQ星座作为我们研究的参考。

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