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Using seas to assess GPS constellation resiliency in an urban canyon environment

机译:在城市峡谷环境中使用海洋评估GPS星座弹性

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Satellite constellation resiliency is an important consideration gaining momentum at the top levels of the Air Force and at Air Force Space Command (AFSPC). The increased availability of threats to satellite systems is challenging the capabilities provided by space assets. We use the System Effectiveness Analysis Simulation (SEAS) to model the Global Positioning System (GPS) constellation in an urban canyon environment. The GPS provides information to a special operation force (SOF) in their effort to recover a weapon of mass destruction (WMD). By varying the type of operations and the number of satellites lost in the simulation, insight is gained into the impact of degradation through the selected top level mission metrics. Statistical difference tests and a designed experiment reveal a resiliency threshold on the number of satellites removed from the constellation. As a result, we conclude that the GPS constellation is resilient even after the loss of several satellites.
机译:卫星星座复原力是在空军高层和空军太空司令部(AFSPC)获得动力的重要考虑因素。对卫星系统的威胁日益增加的可用性正在挑战空间资产所提供的能力。我们使用系统有效性分析仿真(SEAS)对城市峡谷环境中的全球定位系统(GPS)星座进行建模。 GPS向特种作战部队(SOF)提供信息,以帮助他们恢复大规模杀伤性武器(WMD)。通过改变操作类型和模拟中丢失的卫星数量,可以通过选定的顶级任务指标来了解退化的影响。统计差异测试和设计的实验揭示了从星座图中移除的卫星数量的弹性阈值。结果,我们得出结论,即使丢失了几颗卫星,GPS星座也是有弹性的。

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    《Winter Simulation Conference》|2015年|2559-2570|共12页
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