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A number synthesis method of the self-adapting upper-limb rehabilitation exoskeletons

机译:自适应肢体康复外骨骼的数字合成方法

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The goal of this article is to present a number synthesis method for the self-adapting upper-limb rehabilitation exoskeletons. The human joint kinematics and the variability of joint axes around their supposed locations were analyzed; the axes misalignments caused by the wearing error and the movement coupling between joint rotations and axes motions in human joints were taken into account, and the kinematic incompatibility of upper-limb exoskeletons was investigated from an over-actuation perspective. Then, a number synthesis method of the self-adapting upper-limb exoskeletons was proposed by using the traditional degrees of freedom analysis approach of spatial multiloop chains. Applying this method, the basic chains of the self-adapting four-degrees of freedom shoulder-elbow and five-degrees of freedom shoulder-elbow-forearm exoskeletons were synthesized and classified into three and two groups, respectively. Finally, the feasible simplified chains of the self-adapting upper-limb exoskeletons were investigated with the consideration of the quasi-anthropopathic feature and structure simplicity, and several examples were enumerated. The proposed simplified chains could be used as the candidates for further studies on the performance analysis, the chain compare and selection, and structure design of the self-adapting upper-limb exoskeletons.
机译:本文的目标是为自我适应的上肢康复外骨骼提出一个数字合成方法。分析了人的关节运动学和所谓的位置周围的关节轴的可变性;考虑由磨损误差和人关节的关节旋转和轴运动之间的运动耦合引起的轴错位,并从过致动的角度研究了上肢外骨骼的运动学不相容性。然后,通过使用空间多棉链的传统自由度分析方法提出了一种自我适应上肢外骨骼的数字合成方法。应用这种方法,分别合成了自适应四次自由肩部肘部和五次自由肩部肘部前骨骼的基本链分别分为三个和两组。最后,考虑到准拟人的特征和结构简单,研究了自调整上肢外骨骼的可行简化链,并列举了几个实例。所提出的简化链可以用作进一步研究性能分析,链比较和选择的候选者,以及自适应上肢外骨骼的结构设计。

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