首页> 外文会议>56th International Astronautical Congress 2005 vol.2 >PIONEER ANOMALY: WHAT CAN WE LEARN FROM FUTURE PLANETARY EXPLORATION MISSIONS?
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PIONEER ANOMALY: WHAT CAN WE LEARN FROM FUTURE PLANETARY EXPLORATION MISSIONS?

机译:先锋异常:我们可以从未来的星球探索任务中学到什么?

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The Doppler-tracking data of the Pioneer 10 and 11 spacecraft show an unmodelled constant acceleration in the direction of the inner Solar System. Serious efforts have been undertaken to find a conventional explanation for this effect, all without success at the time of writing. Hence the effect, commonly dubbed the Pioneer anomaly, is attracting considerable attention. Unfortunately, no other space mission has reached the long-term navigation accuracy to yield an independent test of the effect. To fill this gap we discuss strategies for an experimental verification of the anomaly via an upcoming space mission. Emphasis is put on two plausible scenarios: non-dedicated concepts employing either a planetary exploration mission to the outer Solar System or a piggybacked micro-spacecraft to be launched from an exploration spacecraft travelling to Saturn or Jupiter. The study analyses the impact of a Pioneer anomaly test on the system and trajectory design for these two paradigms. Both paradigms axe capable of verifying the Pioneer anomaly and determine its magnitude at 10% level. Moreover they can discriminate between the most plausible classes of models of the anomaly. The necessary adaptions of the system and mission design do not impair the planetary exploration goals of the missions.
机译:先锋10号和11号航天器的多普勒跟踪数据显示,在内部太阳系的方向上存在无模型的恒定加速度。已经付出了巨大的努力来找到对此效果的常规解释,但在撰写本文时都没有成功。因此,通常被称为“先驱异常”的效应引起了极大的关注。不幸的是,没有其他太空任务能够达到长期导航精度,无法对效果进行独立测试。为了填补这一空白,我们讨论了通过即将到来的太空任务对异常进行实验验证的策略。重点放在两个可能的方案上:非专用概念,采用对外太阳系的行星探测任务,或从搭载土星或木星的探测航天器发射的搭载微型航天器。该研究分析了这两种范例的先锋异常测试对系统和轨迹设计的影响。两种范式都能够验证“先驱者”异常并确定其幅度为10%。此外,他们可以区分异常模型的最合理类别。系统和任务设计的必要调整不会损害任务的行星探索目标。

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