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ANALYSIS OF DIFFERENTIAL MECHANISMS FOR A ROBOTIC HEAD STABILIZATION SYSTEM

机译:机器人头部稳定系统的微分机理分析。

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This paper presents a robotic system intended to help automate the head and neck stabilization process performed on trauma patients through application of a differential apparatus, a device that distributes an input between multiple output channels. A system to streamline the head stabilization process can save valuable time in a life and death scenario, as well as play a key role in future work on a mobile stretcher robot. This investigation focuses on finding the most suitable device to accommodate multiple possible head positions while maintaining a steady force in order to provide secure motion restriction. After an initial review of current emergency medical services standards, a comparison of potential differential mechanisms is undertaken. Static analysis as well as dynamic modeling is performed in order to determine the most appropriate mechanisms. An initial prototype design incorporating a differential pulley, the most mechanically advantageous mechanism, is then introduced.
机译:本文提出了一种机器人系统,旨在通过应用差分设备(一种在多个输出通道之间分配输入的设备)来帮助自动化创伤患者的头部和颈部稳定过程。简化头部稳定过程的系统可以在生死攸关的情况下节省宝贵的时间,并且在移动担架机器人的未来工作中发挥关键作用。这项研究的重点是找到最合适的设备来容纳多个可能的头部位置,同时保持稳定的力,以提供安全的运动限制。在对当前的紧急医疗服务标准进行初步审查之后,对潜在的差异机制进行了比较。进行静态分析以及动态建模,以确定最合适的机制。然后介绍了包含差速器皮带轮的初始原型设计,这是机械上最有利的机构。

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