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Passive vibration isolation of reaction wheel disturbances using a low frequency flexible space platform

机译:使用低频柔性空间平台对反作用轮扰动进行被动隔振

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Reaction wheel assemblies (RWAs) are momentum exchange devices used in fine pointing control of spacecrafts. Even though the spinning rotor of the reaction wheel is precisely balanced to minimize emitted vibration due to static and dynamic imbalances, precision instrument payloads placed in the neighborhood can always be severely impacted by residual vibration forces emitted by reaction wheel assemblies. The reduction of the vibration level at sensitive payloads can be achieved by placing the RWA on appropriate mountings. A low frequency flexible space platform consisting of folded continuous beams has been designed to serve as a mount for isolating a disturbance source in precision payloads equipped spacecrafts. Analytical and experimental investigations have been carried out to test the usefulness of the low frequency flexible platform as a vibration isolator for RWAs. Measurements and tests have been conducted at varying wheel speeds, to quantify and characterize the amount of isolation obtained from the reaction wheel generated vibration. These tests are further extended to other variants of similar design in order to bring out the best isolation for given disturbance loads. Both time and frequency domain analysis of test data show that the flexible beam platform as a mount for reaction wheels is quite effective and can be used in spacecrafts for passive vibration control.
机译:反作用轮组件(RWA)是用于航天器精确指向控制的动量交换设备。即使反作用轮的旋转转子得到精确平衡,以最大程度地减少由于静态和动态不平衡而产生的振动,但放置在附近的精密仪器有效载荷始终会受到反作用轮组件发出的残余振动力的严重影响。通过将RWA放置在适当的支架上,可以降低敏感负载的振动水平。由折叠的连续梁组成的低频柔性空间平台已被设计用作隔离装有精密有效载荷的航天器中的干扰源的底座。已经进行了分析和实验研究,以测试低频柔性平台作为RWA隔振器的有用性。已经在不同的车轮速度下进行了测量和测试,以量化和表征从反作用轮产生的振动获得的隔离量。这些测试进一步扩展到类似设计的其他变体,以针对给定的干扰负载实现最佳隔离。测试数据的时域和频域分析均表明,柔性梁平台作为反作用轮的底座非常有效,可用于航天器的被动振动控制。

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