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Planar reorientation of a free-free beam in space using embedded electromechanical actuators

机译:使用嵌入式机电执行器对空间中的自由光束进行平面重新定向

摘要

It is demonstrated that the planar reorientation of a free-free beam in zero gravity space can be accomplished by periodically changing the shape of the beam using embedded electromechanical actuators. The dynamics which determine the shape of the free-free beam is assumed to be characterized by the Euler-Bernoulli equation, including material damping, with appropriate boundary conditions. The coupling between the rigid body motion and the flexible motion is explained using the angular momentum expression which includes rotatory inertia and kinematically exact effects. A control scheme is proposed where the embedded actuators excite the flexible motion of the beam so that it rotates in the desired sense with respect to a fixed inertial reference. Relations are derived which relate the average rotation rate to the amplitudes and the frequencies of the periodic actuation signal and the properties of the beam. These reorientation maneuvers can be implemented by using feedback control.
机译:已经证明,通过使用嵌入式机电致动器周期性地改变光束的形状,可以实现零重力空间中的自由光束的平面重新定向。假定决定自由自由光束形状的动力学由欧拉-伯努利方程(包括材料阻尼)和适当的边界条件来表征。使用角动量表达式来解释刚体运动和柔韧性运动之间的耦合,该角动量表达式包括旋转惯性和运动学上的精确效果。提出了一种控制方案,其中嵌入式致动器激励梁的柔性运动,以使梁相对于固定惯性基准按所需方向旋转。得出关系,该关系将平均转速与周期性致动信号的振幅和频率以及光束的特性相关联。可以通过使用反馈控制来实现这些重新定向动作。

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