Testing Machine for Transtibial and Transfemoral Prosthesis

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Geliefert zwischen Fr., 17.10.2025 und Mo., 20.10.2025

Details

The objective of this work is to build a testing machine for prosthesis. The machine should be able to reproduce the same dynamic and kinematics conditions applied on the prosthesis during the normal use. We studied and analyzed the dynamics of the human gait and run. The equations of motion by taking into consideration the masses and moments of inertia of skeletal segments. Most of the parameters of gait were extracted. In conclusion, we have the kinematic requirements of the human center of gravity to generate 6 DOF that the testing machine should carry out to emulate the normal human gait and run. We found the most suitable solution is the SP attached with it an artificial active hip. We have chosen the hydraulic power as it is the most suitable actuation technique for our solution knowing the required actuation forces. To help in controlling the SP motion, a novel Closed-form solution of direct Geometric model for planer and 6-6 Stewart Platform using the rotary sensors instead of liner sensors as wanted to the hydraulic actuators was developed. Sensitivity analysis was studied for that solution, and analytical calculation for computing the workspace was also developed.

Autorentext

Dr. Fouda obtained his PhD from Paris-Saclay University - France in 2017 in Robotics. He obtained his M.Sc. in Computer Engineering from The Arab Academy for Science & Technology & Maritime Transport - Egypt in 2014, and received his B.Sc. from Cairo University, Egypt in 2004 in Computer Engineering.

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Weitere Informationen

  • Allgemeine Informationen
    • Sprache Englisch
    • Herausgeber LAP LAMBERT Academic Publishing
    • Gewicht 268g
    • Untertitel The developed solution can carry testing procedures for either passive or active prothesis
    • Autor Khaled Fouda
    • Titel Testing Machine for Transtibial and Transfemoral Prosthesis
    • Veröffentlichung 11.12.2020
    • ISBN 6203196274
    • Format Kartonierter Einband
    • EAN 9786203196276
    • Jahr 2020
    • Größe H220mm x B150mm x T11mm
    • Anzahl Seiten 168
    • GTIN 09786203196276

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