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Protection against overturning of a lunar-planetary lander using a controlled landing gear

机译:使用受控起落架防止月球着陆器倾覆

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This paper describes an attitude control method to prevent the overturning of lunar and planetary landers. The proposed control method that is based on a variable-damping shock absorber for the landing gear is experimentally validated. Conventionally, the landing gear of lunar and planetary landers has a fixed shock attenuation parameter that is not used proactively for attitude control of the lander during the touchdown sequence. The proposed method suppresses any disturbance to the attitude of the lander by adjusting the damping coefficient of each landing leg independently, based on the angular velocity and displacement velocity of each landing leg. First, the control method for the variable damper is presented. Second, the result of a landing experiment conducted in a two-dimensional plane is shown. These results indicate that the proposed semi-active landing gear system is effective for preventing the overturning of the lander on inclined terrain.
机译:本文介绍了一种防止月球和行星着陆器倾覆的姿态控制方法。实验验证了所提出的基于可变阻尼减震器的起落架控制方法。按照惯例,月球和行星着陆器的起落架具有固定的冲击衰减参数,在着陆序列期间,该参数不会主动用于着陆器的姿态控制。所提出的方法通过基于每个着陆脚的角速度和位移速度独立地调节每个着陆脚的阻尼系数来抑制对着陆器姿态的任何干扰。首先,介绍了可变阻尼器的控制方法。其次,示出了在二维平面上进行的着陆实验的结果。这些结果表明,所提出的半主动起落架系统对于防止着陆器在倾斜地形上倾覆是有效的。

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