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Development of a vibration isolation prototype system for microgravity space experiments

机译:开发用于微重力空间实验的隔振原型系统

摘要

The presence of small levels of low-frequency accelerations on the space shuttle orbiters has degraded the microgravity environment for the science community. Growing concern about this microgravity environment has generated interest in systems that can isolate microgravity science experiments from vibrations. This interest has resulted primarily in studies of isolation systems with active methods of compensation. The development of a magnetically suspended, six-degree-of-freedom active vibration isolation prototype system capable of providing the needed compensation to the orbital environment is presented. A design for the magnetic actuators is described, and the control law for the prototype system that gives a nonintrusive inertial isolation response to the system is also described. Relative and inertial sensors are used to provide an inertial reference for isolating the payload.
机译:航天飞机轨道上存在少量的低频加速度,已经降低了科学界的微重力环境。人们越来越关注这种微重力环境,人们对可以将微重力科学实验与振动隔离的系统产生了兴趣。这种兴趣主要是通过主动补偿方法研究隔离系统。提出了一种磁悬浮,六自由度主动隔振原型系统的开发,该系统能够为轨道环境提供所需的补偿。描述了磁致动器的设计,并且还描述了原型系统的控制律,该样机对系统提供了非侵入式惯性隔离响应。相对和惯性传感器用于提供惯性参考,以隔离有效载荷。

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