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Collaborative Commercial Space Situational Awareness with ESpOC-Empowered Telescopes

机译:ESPOC授权望远镜的协同商业空间情境意识

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This paper will demonstrate that by leveraging advanced photometric processing algorithms developed for the Ballistic Missile Defense (BMD) mission, ExoAnalytic and AGI have proven the capability to provide actionable SSA intelligence for satellite operators from small telescopes in less than optimal viewing conditions. Space has become an increasingly cluttered environment requiring satellite operators to remain forever vigilant in order to prevent collisions with their assets and prevent further cluttering of the space environment. The Joint Space Operations Center (JSpOC), which tracks all objects in earth orbit, reports possible upcoming conjunctions to operators by providing Conjunction Summary Messages (CSMs). However due to large positional uncertainties in the propagated position of space objects at the time closest approach, the volume of CSMs is excessive to the point that maneuvers in response to CSMs without additional screening is cost prohibitive. CSSI and the Space Data Center have been able to screen most CSMs by using more accurate operator ephemeris. By screening with operator ephemeris alone they have been able to demonstrate that safety limits will not be exceeded in a good number of these close encounters and that extra delta-V need to not be expended in performing a Collision Avoidance (COLA) maneuver. However there remains a decent portion of alerts that may warrant action especially when the secondary object is an uncontrolled space object without accurate ephemeris data such as a dead satellite or rocket body.'By dynamically tasking the ExoAnalytic Space Operations Center (ESpOC) observatories to provide real-time tracking and photometric characterization of the secondary objects in response to these CSMs satellite operators stand to benefit significantly from an additional method of conjunction screening. The refined tracks and conjunction assessments obtained by ESpOC screening allow operators to safely reduce the number of COLAs performed in response to safe close approaches and provide optimized COLA maneuver planning in response to validated threats.
机译:本文将证明,利用为弹道导弹防御(BMD)任务开发的高级光度处理算法,exoanalytic和AGI已证明能力为来自小型望远镜的卫星运营商提供可操作的SSA智能,而不是最佳的观看条件。空间已成为需要卫星运营商的日益杂乱的环境,以便永远保持警惕,以防止与其资产的碰撞并防止空间环境的进一步杂乱。关节空间运营中心(JSPOC)跟踪地球轨道中的所有对象,通过提供结合摘要消息(CSMS)报告即将到来的连词即将到来的连词。然而,由于当时空间对象的繁殖位置在最近的方法中的大位置不确定性,CSMS的体积过多的是,在没有额外筛选的情况下,机动的点过多是在没有额外筛选的情况下的成本越来越高的。 CSSI和空间数据中心能够通过使用更准确的操作员星历来筛选大多数CSM。通过筛选运营商星际历史,他们已经能够证明在许多这些密切遇到的情况下不会超过安全限制,并且额外的DELTA-V需要在执行碰撞避免(可乐)机动方面不需要消除。然而,仍然存在可能需要操作措施的警报部分,特别是当次要对象是一个不受控制的空间对象时,没有准确的星历数据,例如死卫星或火箭身体。在动态任务的exoanalytic空间运营中心(espoc)观察者提供次要对象的实时跟踪和光度表征响应于这些CSMS卫星运营商的替代方案,从附加的结合筛选方法中显着受益。通过ESPOC筛选获得的精致轨道和结合评估允许运营商安全地减少对响应安全密切方法进行的COLA的数量,并为响应验证威胁提供优化的COLA机动规划。

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