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Battery-Aware Scheduling in Low Orbit: The GomX-3 Case

机译:低轨道中的电池感知调度:GOMX-3案例

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When working with space systems the keyword is resources. For a satellite in orbit all resources are sparse and the most critical resource of all is power. It is therefore crucial to have detailed knowledge on how much power is available for an energy harvesting satellite in orbit at every time - especially when in eclipse, where it draws its power from onboard batteries. This paper addresses this problem by a two-step procedure to perform task scheduling for low-earth-orbit (LEO) satellites exploiting formal methods. It combines cost-optimal reachability analyses of priced timed automata networks with a realistic kinetic battery model capable of capturing capacity limits as well as stochastic fluctuations. The procedure is in use for the automatic and resource-optimal day-ahead scheduling of GOMX-3, a power-hungry nanosatellite currently orbiting the earth. We explain how this approach has overcome existing problems, has led to improved designs, and has provided new insights.
机译:使用空间系统时,关键字是资源。对于轨道中的卫星,所有资源都稀疏,所有资源都是电源的。因此,对每次在轨道上的能量收集卫星提供的能量收集卫星有多少来说,这是至关重要的 - 特别是在日食中,它从船上电池汲取电源。本文通过两步过程解决了这个问题,以便对利用正式方法的低地球轨道(LEO)卫星进行任务调度。它结合了价格的定期自动机网络的成本最佳可达性分析,具有能够捕获容量限制以及随机波动的实际动力电池模型。该程序用于自动和资源最佳的GOMX-3,一种目前绕地球的龙头纳卫星的优化日期调度。我们解释了这种方法如何克服现有问题,导致了改进的设计,并提供了新的见解。

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