论文标题

边界条件对高性能隔离六角形平台的影响

Effect of boundary conditions on a high-performance isolation hexapod platform

论文作者

Stabile, Alessandro, Yotov, Vladimir V., Aglietti, Guglielmo S., De Francesco, Pasquale, Richardson, Guy

论文摘要

航天器微启动的隔离对于成功部署依赖高精度指向的工具至关重要。 Hexapod平台代表了一个有前途的解决方案,但是与在可接受的质量和复杂性预算中获得理想的3D动态有关的困难导致了最少的实际采用。本文介绍了支柱边界条件(BCS)对系统级机械扰动抑制的影响。传统的全旋转关节配置的固有局限性被突出显示,并显示为链接质量和旋转惯性。提出并通过分析证明了针刺的BC替代方案,以减轻2D和3D的缓解。新BC的优势在任意并行操纵器中具有,并通过数值测试证明了几种Hexapod几何形状。提出了具有良好性能的配置。最后,描述并验证了允许物理实现的新型平面关节。因此,这项工作可以开发不需要主动控制的微型校准衰减平台。

Isolation of spacecraft microvibrations is essential for the successful deployment of instruments relying on high-precision pointing. Hexapod platforms represent a promising solution, but the difficulties associated with attaining desirable 3D dynamics within acceptable mass and complexity budgets have led to a minimal practical adoption. This paper addresses the influence of strut boundary conditions (BCs) on system-level mechanical disturbance suppression. Inherent limitations of the traditional all-rotational joint configuration are highlighted and shown to originate in link mass and rotational inertia. A pin-slider BC alternative is proposed and analytically proven to alleviate them in both 2D and 3D. The advantages of the new BC hold for arbitrary parallel manipulators and are demonstrated for several hexapod geometries through numerical tests. A configuration with favourable performance is suggested. Finally, a novel planar joint that allows the physical realisation of the proposed BC is described and validated. Consequently, this work enables the development of platforms for microvibration attenuation that do not require active control.

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