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RIGID BODY GUIDANCE OF HUMAN GAIT AS CONSTRAINED TRS SERIAL CHAIN
Conference proceeding

RIGID BODY GUIDANCE OF HUMAN GAIT AS CONSTRAINED TRS SERIAL CHAIN

Gim Song Soh and ASME
PROCEEDINGS OF THE ASME INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, 2014, VOL 5A, Vol.5A, p.V05AT08A063
01/01/2014

Abstract

Engineering Engineering, Electrical & Electronic Engineering, Mechanical Science & Technology Technology
The motion of gait is a cyclical activity that requires the coordination between locomotion mechanism, motor control and musculoskeletal function. The basic assumption is that one stride is the same as the next. From a simplified kinematics point of view, the human gait can be considered as a TRS serial chain with six degrees-of-freedom driven by the pelvis rotational and tilting motion during walking. This paper presents a dimensional synthesis procedure for the design of two degrees-of-freedom of spatial eight-bar linkages by mechanically constraining a TRS serial chain. The goal is to develop a methodology for the design of under-actuated lower limb walking devices or passively driven exoskeleton systems. The dimensional synthesis process starts with the specification of the links of a TRS chain according to the gait anthropometric data. We show the various ways how four TS constraints can be used to constrain the links of the this chain to obtain a two degrees-of-freedom spatial eight-bar linkage. We formulate and solve the design equations as well as analyze the resulting eight bar linkage from the data we obtained from an optical motion capture system. An example demonstrates our results.

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