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The Knee Joint Design and Control of Above-knee Intelligent Bionic Leg Based on Magneto-rheological Damper 被引量:9

The Knee Joint Design and Control of Above-knee Intelligent Bionic Leg Based on Magneto-rheological Damper
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摘要 The above-knee intelligent bionic leg is very helpful to amputees in the area of rehabilitation medicine. This paper first introduces the functional demand of the above-knee prosthesis design. Then, the advantages of the four-bar link mechanism and the magneto-rheological (MR) damper are analyzed in detail. The fixed position of the MR damper is optimized and a virtual prototype of knee joint is given. In the end, the system model of kinematics, dynamics, and controller are given and a control experiment is performed. The control experiment indicates that the intelligent bionic leg with multi-axis knee is able to realize gait tracking of the amputee's healthy leg based on semi-active control of the MR damper. The above-knee intelligent bionic leg is very helpful to amputees in the area of rehabilitation medicine. This paper first introduces the functional demand of the above-knee prosthesis design. Then, the advantages of the four-bar link mechanism and the magneto-rheological (MR) damper are analyzed in detail. The fixed position of the MR damper is optimized and a virtual prototype of knee joint is given. In the end, the system model of kinematics, dynamics, and controller are given and a control experiment is performed. The control experiment indicates that the intelligent bionic leg with multi-axis knee is able to realize gait tracking of the amputee's healthy leg based on semi-active control of the MR damper.
出处 《International Journal of Automation and computing》 EI 2010年第3期277-282,共6页 国际自动化与计算杂志(英文版)
基金 supported by China Postdoctoral Science Foundation(No. 20080441093) Key Laboratory Foundation of Liaoning Province(No. 2008S088) Postdoctoral Science Foundation of Northeastern University (No. 20080411)
关键词 Knee joint above-knee intelligent bionic leg magneto-rheological damper. Knee joint, above-knee intelligent bionic leg, magneto-rheological damper.
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