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Disposal Operation Strategies for Remote Sensing Satellite Fleets In Nominal and Emergency Situations

机译:名义和紧急情况下遥感卫星舰队的处置策略

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Since December 2010, a new French Law on Space Operations (LSO) must be complied with by any entity related to space activities. It imposes, for instance, that any satellite operator shall demonstrate his capability to control the space vehicle, whatever the mission phase from the launch up to its End Of Life (EOL). The French Space Agency (CNES) is currently operating several remote sensing satellites (the last one called PLEIADES 1A), among a larger fleet of satellites. In that context, CNES has decided to perform several specific studies in order to define satellite disposal operation plans in any situation. The typical scenario of EOL operations consists in implementing five phases : disposal orbital manoeuvres, fluidic passivation, electrical passivation, transmitter disconnection and EOL orbit computation. One shall point out that these satellites (except PLEIADES 1A and 1B) were not originally designed to conform with the constraints imposed by the LSO. Thus, detailed analysis were conducted to identify the on-board and the on-ground improvements, as well as the operations chronology, without compromising in any way the security in the conduct of the operations. Depending on the context (nominal, contingency or emergency case) and the satellite subsystems status, different scenarios have been defined and compared in terms of strategy of disposal orbital manoeuvres, on-board and on-ground software upgrades, cumbersome operations, complexity, feedback... This paper addresses this tradeoff, and moreover, it focuses on two main points : 1) the on-board software upgrades (monitoring parameters, Failure Detection Isolation Recovery strategy, chronology and constraints of modifications upload) and the equipment that must be switched off or for which configuration parameters must be tuned, 2) the different disposal orbit manoeuvre strategies : several Orbit Control Manoeuvres (OCM), one or two OCMs followed by an infinite-duration thrust, or an unique infinite-duration thrust. In conclusion, the generic principles applied in these studies could be considered as guidelines for any other satellite platform EOL operations.
机译:自2010年12月以来,与太空活动有关的任何实体都必须遵守新的法国太空操作法(LSO)。例如,它规定,无论从发射到生命终结(EOL)的任务阶段,任何卫星运营商均应展示其控制航天器的能力。法国航天局(CNES)目前正在操作几颗遥感卫星(最后一颗称为PLEIADES 1A),其中包括较大的卫星群。在这种情况下,CNES决定进行几项具体研究,以便在任何情况下确定卫星处置作业计划。 EOL操作的典型场景包括实施五个阶段:处置轨道操纵,流体钝化,电钝化,发射器断开和EOL轨道计算。应当指出的是,这些卫星(PLEIADES 1A和1B除外)最初并未设计成符合LSO施加的限制。因此,进行了详细的分析,以识别机载和地面的改进情况以及操作的时间顺序,而不会以任何方式损害操作进行中的安全性。根据情况(名义,应急或紧急情况)和卫星子系统的状态,已定义和比较了不同的方案,包括处置轨道机动策略,机载和地面软件升级,繁琐的操作,复杂性,反馈等方面的情况。 ...本文解决了这一折衷,此外,它着重于两个要点:1)板载软件升级(监视参数,故障检测隔离恢复策略,修改的时间顺序和约束)以及必须安装的设备。关闭或必须调整其配置参数; 2)不同的处置轨道机动策略:几种轨道控制机动(OCM),一个或两个OCM,然后是无限持续时间推力或独特的无限持续时间推力。总之,这些研究中应用的通用原则可以视为任何其他卫星平台EOL操作的指南。

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