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Communications with Curiosity during Solar Conjunction

机译:太阳结合时的好奇心沟通

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This study examines the methodology for operating and communicating with NASA's Mars Science Laboratory (MSL) Curiosity Rover during the 2019 solar conjunction. For MSL, solar conjunction occurs when the viewing angle between the Sun and Mars from Earth's perspective falls below 3 degrees, which occurs roughly every two Earth years and lasts for about two weeks. This presents a challenge for engineers operating a vehicle on Mars because the degraded signal to noise ratio disrupts data flow between Earth and the spacecraft. As a result, operators designate a command moratorium in which no commands are sent to the rover and instead design long-term plans that are uplinked weeks in advance (rather than the nominal case of daily uplinks). Coordinating communications with the rover leading up to and following conjunction requires negotiations with several orbiters, another lander, and the Deep Space Network (DSN) – each with their own set of constraints. It is the Strategic Comm Planning Team's job to oversee this coordination, which acts as a baseline for the conjunction planning cadence. In the 2019 conjunction, MSL's Comm team faced additional complications such as the arrival of two new spacecraft at Mars – NASA's InSight (NSY) and the ESA-Roscosmos ExoMars Trace Gas Orbiter (TGO). The team also utilized a set of new, complex planning tools that were developed to handle the intricate incorporation of these new spacecraft into the Mars relay environment, but which had never before been used for conjunction communication planning. Although experience with previous conjunctions provides guidance, each conjunction period presents unique challenges and finding the optimal solution each time is one of the hardest challenges that the Comm team faces.
机译:这项研究探讨了在2019年太阳活动期间与NASA的火星科学实验室(MSL)好奇号火星车进行操作和通信的方法。对于MSL,当太阳和火星之间的视角从地球的角度下降到3度以下时(即大约每地球两年发生一次,持续约两周),就会发生太阳结合。这对在火星上操作车辆的工程师提出了挑战,因为信噪比的降低会破坏地球与航天器之间的数据流。结果,操作员指定了一个命令暂停,在该命令中没有命令发送到流动站,而是设计了提前数周进行上行链路的长期计划(而不是日常上行链路的正常情况)。要与流动站之间以及之前的流动站协调通信,就需要与数个轨道器,另一个着陆器和深空网(DSN)进行谈判,而每一个都有各自的约束条件。监督这种协调是战略通信计划团队的工作,它是联合计划节奏的基准。在2019年的联结中,MSL的Comm团队面临着更多的复杂性,例如两架新飞船抵达火星,即NASA的InSight(NSY)和ESA-Roscosmos ExoMars微量气体轨道器(TGO)。该团队还利用了一套新的,复杂的计划工具,这些工具被开发用来处理将这些新航天器复杂地整合到火星接力环境中,但是以前从未用于联合通信计划。尽管以前的联名经验可以为您提供指导,但每个联名期间都会遇到独特的挑战,而每次找到最佳解决方案都是Comm团队面临的最困难的挑战之一。

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