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MSL-RAD Cruise Operations Concept

机译:MSL-RAD巡航行动概念

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The Mars Science Laboratory (MSL) payload includes the Radiation Assessment Detector (RAD) instrument, intended to fully characterize the radiation environment for the MSL mission. The RAD instrument operations concept is intended to reduce impact to spacecraft resources and effort for the MSL operations team. By design, RAD autonomously performs regular science observations without the need for frequent commanding from the Rover Compute Element (RCE). RAD operates with pre-defined "sleep" and "observe" periods, with an adjustable duty cycle for meeting power and data volume constraints during the mission. At the start of a new science observation, RAD performs a pre-observation activity to assess count rates for selected RAD detector elements. Based on this assessment, RAD can enter "solar event" mode, in which instrument parameters (including observation duration) are selected to more effectively characterize the environment. At the end of each observation period, RAD stores a time-tagged, fixed length science data packet in its non-volatile mass memory storage. The operating cadence is defined by adjustable parameters, also stored in non-volatile memory within the instrument. Periodically, the RCE executes an on-board sequence to transfer RAD science data packets from the instrument mass storage to the MSL downlink buffer. Infrequently, the RAD instrument operating configuration is modified by updating internal parameter tables and configuration entries. RAD cruise operations were conducted at JPL through the MSL Mission Operations Team. RAD activities were fully reviewed and approved according to procedures consistent with a NASA flagship mission. No formal mission requirements were in place for conducting a long-term science investigation with instruments in cruise. Yet the RAD instrument characterized the radiation environment inside an interplanetary spacecraft for over seven months in transit to Mars. This paper describes operations concept for the RAD instrument during the cruise phase of the MSL mission.
机译:火星科学实验室(MSL)的有效载荷包括辐射评估检测器(RAD)仪器,旨在全面表征MSL任务的辐射环境。 RAD仪器操作概念旨在减少对航天器资源的影响,并减少MSL操作团队的工作量。通过设计,RAD无需进行流动站计算元素(RCE)的频繁命令即可自主执行常规的科学观测。 RAD以预定义的“睡眠”和“观察”周期运行,并具有可调整的占空比,以在任务期间满足功率和数据量的限制。在开始新的科学观测时,RAD会执行预观测活动,以评估选定RAD探测器元素的计数率。基于此评估,RAD可以进入“太阳能事件”模式,在该模式下,选择仪器参数(包括观测持续时间)以更有效地表征环境。在每个观察周期结束时,RAD在其非易失性大容量存储器中存储一个带有时间标记的固定长度的科学数据包。操作节奏由可调参数定义,这些参数也存储在仪器内的非易失性存储器中。 RCE定期执行板上序列,以将RAD科学数据包从仪器大容量存储传输到MSL下行链路缓冲区。很少会通过更新内部参数表和配置条目来修改RAD仪器的操作配置。 RAD的巡航行动是通过MSL任务行动小组在JPL进行的。根据与NASA旗舰任务一致的程序,对RAD活动进行了全面的审查和批准。对于使用巡航仪器进行长期科学调查,没有正式的任务要求。然而,RAD仪器表征了行星际飞船内部七个月以上的辐射环境,该过程已转移至火星。本文介绍了MSL任务巡航阶段RAD仪器的操作概念。

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