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Modeling and Analysis of a 3-DOF Spherical Momentum Exchange Actuator for Spacecraft Attitude Maneuver

机译:航天器姿态机动的三自由度球形动量交换执行器的建模与分析

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This paper describes a prototype and analytical studies of a three-degree of freedom (3-DOF) spherical momentum exchange actuator for three-axis attitude control. Its moving part, without any gimbal structures cascaded, can be directly driven by a stator electromagnetic field instead of servomotors, which sets it apart from conventional control moment gyros. First, the motion of equation and torque exchange model are developed. Analysis shows that the proposed actuator possesses a considerable torque amplification effect. Then a two-level torque-sharing strategy tailored for this device is presented to decouple the command torque into reaction flywheel/gimbal torque and further assign them to each of the stator coils. The physical limit of the rotor's tilt range is investigated and an n-step incremental Euler eigenaxis rotation is resorted to as the solution. Numerical simulation results present a desirable dynamic response, revealing that the single device has the potential to provide limited three-axis control for spacecraft. Finally, the pros and cons of this device are analyzed. This study may serve as a reference on the design and research of new future momentum exchange devices for spacecraft attitude maneuvers. (C) 2015 American Society of Civil Engineers.
机译:本文介绍了用于三轴姿态控制的三自由度(3-DOF)球形动量交换执行器的原型和分析研究。它的运动部件没有任何级联的万向架结构,可以直接由定子电磁场驱动,而不是由伺服电机驱动,这使其与传统的控制力矩陀螺仪不同。首先,建立了方程运动和扭矩交换模型。分析表明,提出的执行器具有相当大的扭矩放大效果。然后,提出了针对该设备量身定制的两级扭矩共享策略,以将命令扭矩解耦为反作用飞轮/万向扭矩,并将其进一步分配给每个定子线圈。研究了转子倾斜范围的物理极限,并采用n阶增量Euler本征轴旋转作为解决方案。数值模拟结果显示了理想的动态响应,表明单个设备具有为航天器提供有限的三轴控制的潜力。最后,分析了该设备的优缺点。该研究可为航天器姿态操纵的新型未来动量交换装置的设计和研究提供参考。 (C)2015年美国土木工程师学会。

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