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Design of Universal Docking Port for Modular On-Orbit Servicing Robots

机译:模块化在轨维修机器人通用扩展坞设计

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The modular spacecraft can be defined as a spacecraft system constructed from a set of standardized and reconfigurable components with universal docking mechanism and interface that allow transfer of mechanical forces and moments, electrical power, and communication throughout the sub-system. In this paper, we designed a Universal Docking Port (UDP) for micro modular on-orbit servicing spacecraft. Moreover, we also explained the details of functions and described the mainly working steps of UDP in this paper. The inverse-symmetric design made UDP with universal capability and the guided holes brought large docking tolerances to UDP. Furthermore, UDP could achieve the wide range, long distance, multi-attitudes and soft capturing by the separate capturing head, multi-bar system and rotatable underpan. Therefore, for a set of independent modules, The UDP could physically connect the all of them together rigid, safe and flexible.
机译:模块化航天器可以定义为由一组具有通用对接机制和接口的标准化且可重新配置的组件构成的航天器系统,该接口和接口允许在整个子系统中传递机械力和力矩,电力和通信。在本文中,我们为微模块化在轨维修航天器设计了通用坞站端口(UDP)。此外,我们还解释了功能的细节,并描述了UDP的主要工作步骤。反对称设计使UDP具有通用功能,并且导向孔为UDP带来了较大的对接公差。此外,UDP可以通过单独的捕获头,多杆系统和可旋转的底托来实现大范围,长距离,多姿态和软捕获。因此,对于一组独立的模块,UDP可以将所有这些模块刚性,安全和灵活地连接在一起。

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