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EO/IR Satellite Constellations for the Early Detection and Tracking of Collision Events

机译:EO / IR卫星星座,用于碰撞事件的早期检测和跟踪

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The detection and tracking of collision events involving existing Low Earth Orbit (LEO) Resident Space Objects (RSOs) is becoming increasingly important with the higher LEO space objects traffic volume which is anticipated to increase even further in the near future. Changes in velocity that can lead to a collision are hard to detect early on time, and before the collision happens. Several collision events can happen at the same time and continuous monitoring of the LEO orbit is necessary in order to determine and implement collision avoidance strategies. We present a simulation of a constellation system consisting of multiple platforms carrying EO/IR sensors for the detection of such collisions. The presented simulation encompasses the full complexity of LEO trajectories changes which can collide with currently operating satellites. Efficient multitarget filter with information-theoretic multisensor management is implemented and evaluated on different constellations.
机译:随着更高的LEO空间物体的通信量预计在不久的将来会进一步增加,涉及到现有低地球轨道(LEO)驻留空间物体(RSO)的碰撞事件的检测和跟踪变得越来越重要。导致碰撞的速度变化很难在碰撞发生之前及早发现。多个碰撞事件可能同时发生,因此有必要对LEO轨道进行连续监控,以确定并实施碰撞避免策略。我们提出了一个星座系统的仿真,该星座系统由携带EO / IR传感器的多个平台组成,用于检测此类碰撞。所呈现的模拟涵盖了LEO轨迹变化的全部复杂性,这些变化可能与当前运行的卫星发生碰撞。在不同的星座上实现并评估了具有信息理论多传感器管理功能的高效多目标滤波器。

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