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Operator's Reliability During Spacecraft Docking Training on Board Mir and ISS.

Bernd Johannes, Sergey V Bronnikov, Juri A Bubeev

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    |September 10, 2021
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    Summary

    Cosmonaut reliability during spacecraft docking improved significantly from Mir to International Space Station (ISS) missions. This research validates a model for assessing operator reliability in critical space operations.

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    Area of Science:

    • Space Operations
    • Human Factors in Aviation and Spaceflight
    • Psychophysiology

    Background:

    • The PILOT experiment assessed cosmonaut reliability during manual spacecraft docking.
    • This research focused on Soyuz and Progress spacecraft docking with Mir and the International Space Station (ISS).

    Purpose of the Study:

    • To evaluate cosmonaut reliability in mission-critical operations.
    • To assess psychophysiological costs and performance during simulated space docking.

    Main Methods:

    • Utilized a simulation of spacecraft docking for training and research.
    • Collected data on performance levels and individual effort over three decades.
    • Involved 32 cosmonauts in the study.

    Main Results:

    • Cosmonaut reliability significantly increased from Mir (0.45) to ISS missions (0.51).
    • Reliability remained stable during ISS missions (0.50 ± 0.1).

    Conclusions:

    • Salnitskis model for operator reliability evaluation was successfully adapted and validated.
    • The model is sensitive and robust for practical application in critical operational tasks like space docking.