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Design and performance of the pay load instrumentation of the BepiColombo Mercury planetary orbiter

机译:BepiColombo水星行星轨道飞行器有效载荷仪器的设计和性能

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摘要

High integration and miniaturization of payload suites have been identified by ESA as a possible strategy for future space missions. Driving argument for this effort is the wish for the future exploration of more solar system bodies in a relatively short time period. Standardizing the payload of missions may contribute to the flexibility of the mission, whereas the reduction of mass and volume could significantly reduce the all over costs. This approach was followed throughout the re-assessment of the payload of the Mercury Planetary Orbiter (MPO) for the BepiColombo mission. The exploration of Mercury imposes several challenges on the mission due to Mercury's environment: The orbiter payload instruments have to face a rather high thermal heat load and high radiation dose levels. Mass savings were intended throughout the instrumentation by definition of the instruments design to a higher level, while meeting the science requirements. The instruments design and the iteration towards a higher maturity level was carried out together with the Science Advisory group of BepiColombo.
机译:ESA已将有效载荷套件的高度集成和小型化确定为未来太空任务的可能策略。推动这一努力的理由是希望在相对较短的时间内进一步探索更多的太阳系天体。标准化特派团的有效载荷可能有助于提高特派团的灵活性,而减少质量和体积则可以大大减少全部费用。在对BepiColombo任务的水星行星轨道器(MPO)的有效载荷进行重新评估的整个过程中,一直采用这种方法。由于水星的环境,对水星的探索给飞行任务带来了一些挑战:轨道有效载荷仪器必须面对相当高的热负荷和高辐射剂量水平。通过在满足科学要求的前提下将仪器设计的定义提高到更高水平,可以节省整个仪器的质量。与BepiColombo的科学咨询小组一起进行了仪器的设计和向更高成熟度的迭代。

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