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2018 | OriginalPaper | Chapter

Study on the Effects of Rotation Axis Misalignment in an Exoskeleton-Human Hip Joint

Authors : C. Moldovan, I. Maniu, E. C. Lovasz, Ana-Maria Stoian

Published in: New Advances in Mechanism and Machine Science

Publisher: Springer International Publishing

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Abstract

The paper presents research on one DOF (Degree of Freedom) hip joint of an exoskeleton regarding the possibilities and effects of rotation axis misalignment in the hip joint. By rotation axis misalignment, we understand the difference of alignment between the hip joint axis of rotation in human and exoskeleton; we also consider only parallel, not angular axis misalignments in our model. The proposed approach for the development of exoskeletons is to take into consideration inherent axis misalignments and analyze the possibilities to reduce their effects on the ergonomics of the device. The first step in this approach is the quantification of effects of rotation axis misalignments in exoskeletons and to achieve this, we developed the kinematic model which is presented in this paper. Most approaches focus on perfectly aligned axis of rotation, while this is not the case in our study, we focus on an acceptable misalignment for the user.

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Literature
5.
go back to reference Costin S, Micu C, Mustata C, Trifan L (2013) Selection of methods for determining the rotation center of the hip articulation for the design of a custom acetabular prosthesis. In: Proceedings of the 4th international conference on automotive and transportation systems, Brasov. WSEAS—ICAT, pp 294–300 Costin S, Micu C, Mustata C, Trifan L (2013) Selection of methods for determining the rotation center of the hip articulation for the design of a custom acetabular prosthesis. In: Proceedings of the 4th international conference on automotive and transportation systems, Brasov. WSEAS—ICAT, pp 294–300
6.
go back to reference Schofer MD (2010) Radiological determination of the anatomic hip centre from pelvic landmarks. Acta Orthop. Belg. 76:479–485 Schofer MD (2010) Radiological determination of the anatomic hip centre from pelvic landmarks. Acta Orthop. Belg. 76:479–485
7.
go back to reference Cempini M et al (2013) Self-alignment mechanisms for assistive wearable robots: a kinetostatic compatibility method. IEEE Trans Rob 29(1):236–250CrossRef Cempini M et al (2013) Self-alignment mechanisms for assistive wearable robots: a kinetostatic compatibility method. IEEE Trans Rob 29(1):236–250CrossRef
Metadata
Title
Study on the Effects of Rotation Axis Misalignment in an Exoskeleton-Human Hip Joint
Authors
C. Moldovan
I. Maniu
E. C. Lovasz
Ana-Maria Stoian
Copyright Year
2018
DOI
https://doi.org/10.1007/978-3-319-79111-1_16

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