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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Steering law for a cluster of magnetically suspended momentum wheels with vernier gimballing capability
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Steering law for a cluster of magnetically suspended momentum wheels with vernier gimballing capability

机译:具有游标万向轮功能的一组磁悬浮动量车轮的转向定律

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This paper focuses on the steering law for a magnetically suspended momentum wheel (MSMW) cluster with vernier gimballing capability. Firstly, the dynamical model of the spacecraft equipped with the MSMW cluster is constructed in a generalized form. Then a new steering law for the MSMW cluster is proposed to switch between two operation modes: the conventional momentum wheel mode for outputting spin torque, and the double gimbaled wheel mode for outputting the gyroscopic torques. Compared with the traditional steering law, the proposed steering law with two modes switch can avoid the small vernier gimbal angles saturation. Finally, simulation results demonstrate the merits of using vernier gimballing capability and the effectiveness of the proposed steering law in providing the command torques and avoiding the saturation of the vernier gimbal angles.
机译:本文重点研究具有游标万向滚珠功能的磁悬浮动量轮(MSMW)簇的转向定律。首先,以广义形式构建装备有MSMW机群的航天器动力学模型。然后,提出了一种针对MSMW机群的新转向定律,以在两种操作模式之间进行切换:传统的动量轮模式用于输出旋转扭矩,而双万向轮模式用于输出陀螺扭矩。与传统的转向定律相比,所提出的两种模式切换的定律可以避免较小的游标万向架角度饱和。最后,仿真结果证明了使用游标万向节功能的优点以及所提出的转向定律在提供指令转矩和避免游标万向节角度饱和方面的有效性。

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