首页> 外文会议>International Conference on Control, Decision and Information Technologies >Modelling of a Bio-Inspired Knee Joint and Design of an Energy Saving Exoskeleton Based on Performance Maps Optimisation for Condylar Knee Prosthetics
【24h】

Modelling of a Bio-Inspired Knee Joint and Design of an Energy Saving Exoskeleton Based on Performance Maps Optimisation for Condylar Knee Prosthetics

机译:基于性能图优化的生物启发膝关节和节能外骨骼设计的建模与髁骨膝关节假药

获取原文

摘要

The process of designing bio-inspired knee joint for prosthetics/exoskeletons has been a challenging issue due to the complicated relationships between the performance criteria and the link lengths of the design space, or workspace in the case of manipulators. This paper address this issue by presenting numerical analysis and design methodology that have been used for mapping the design space of a bio-inspired knee joint. Four aspects of performance are modelled: peak mechanical advantage, RMS (root mean square) mechanical advantage, RMS sliding ratio, and range of movement. The performance of the joint is dependent on the shape of the condylar surfaces and the geometry of the four-bar mechanism. The results of the complete map for the design space are characterized by the mechanical advantage, sliding ratio and the range of movement that mimics the human knee joint with the movement of rolling and sliding between the condylar surfaces of the femur and tibia. Therefore, several design charts are proposed accordingly to facilitate the selection of designers of the optimal configuration adapted to their specific application. Based on our numerical analysis performed on the proposed bio-inspired knee joint model, the performance maps demonstrated that there is an estimated reduction of 30% for the actuator required force.
机译:由于设计空间的绩效标准和设计空间的连杆长度之间的关系,或者在机械手的情况下,设计了对假肢/外骨骼的生物启发膝关节的过程是一个具有挑战性的问题。本文通过呈现用于映射生物启发膝关节的设计空间的数值分析和设计方法来解决此问题。性能的四个方面是建模:峰值机械优势,RMS(均方根)机械优势,RMS滑动比和运动范围。接头的性能取决于髁突表面的形状和四杆机构的几何形状。设计空间的完整图的结果的特征在于利用股骨和胫骨的髁表面之间的运动和滑动的人体膝关节模仿人膝关节的机械优势,滑动比和运动范围。因此,相应地提出了几种设计图表,以便于选择适用于其特定应用的最佳配置的设计者。基于我们对拟议的生物启发膝关节模型进行的数值分析,性能图表明,执行器所需的力估计减少30 %。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号