Literature DB >> 25554734

SIMULTANEOUS CONTROL OF AN ANKLE-FOOT PROSTHESIS MODEL USING A VIRTUAL CONSTRAINT.

Akshay Nanjangud1, Robert D Gregg2.   

Abstract

Amputee locomotion can benefit from recent advances in robotic prostheses, but their control systems design poses challenges. Prosthesis control typically discretizes the nonlinear gait cycle into phases, with each phase controlled by different linear controllers. Unfortunately, real-time identification of gait phases and tuning of controller parameters limit implementation. Recently, biped robots have used phase variables and virtual constraints to characterize the gait cycle as a whole. Although phase variables and virtual constraints could solve issues with discretizing the gait cycle, the virtual constraints method from robotics does not readily translate to prosthetics because of hard-to-measure quantities, like the interaction forces between the user and prosthesis socket, and prosthesis parameters which are often altered by a clinician even for a known patient. We use the simultaneous stabilization approach to design a low-order, linear time-invariant controller for ankle prostheses independent of such quantities to enforce a virtual constraint. We show in simulation that this controller produces suitable walking gaits for a simplified amputee model.

Entities:  

Year:  2014        PMID: 25554734      PMCID: PMC4279457          DOI: 10.1115/DSCC2014-5963

Source DB:  PubMed          Journal:  Proc ASME Dyn Syst Control Conf        ISSN: 2151-1853


  11 in total

1.  Upslope walking with a powered knee and ankle prosthesis: initial results with an amputee subject.

Authors:  Frank Sup; Huseyin Atakan Varol; Michael Goldfarb
Journal:  IEEE Trans Neural Syst Rehabil Eng       Date:  2010-10-14       Impact factor: 3.802

2.  Investigations of roll-over shape: implications for design, alignment, and evaluation of ankle-foot prostheses and orthoses.

Authors:  Andrew H Hansen; Dudley S Childress
Journal:  Disabil Rehabil       Date:  2010       Impact factor: 3.033

3.  The advantages of a rolling foot in human walking.

Authors:  Peter G Adamczyk; Steven H Collins; Arthur D Kuo
Journal:  J Exp Biol       Date:  2006-10       Impact factor: 3.312

4.  Effective rocker shapes used by able-bodied persons for walking and fore-aft swaying: implications for design of ankle-foot prostheses.

Authors:  Andrew H Hansen; Charles C Wang
Journal:  Gait Posture       Date:  2010-05-14       Impact factor: 2.840

5.  Design and Control of a Powered Transfemoral Prosthesis.

Authors:  Frank Sup; Amit Bohara; Michael Goldfarb
Journal:  Int J Rob Res       Date:  2008-02-01       Impact factor: 4.703

6.  A portable powered ankle-foot orthosis for rehabilitation.

Authors:  K Alex Shorter; Géza F Kogler; Eric Loth; William K Durfee; Elizabeth T Hsiao-Wecksler
Journal:  J Rehabil Res Dev       Date:  2011

7.  Towards Biomimetic Virtual Constraint Control of a Powered Prosthetic Leg.

Authors:  Robert D Gregg; Jonathon W Sensinger
Journal:  IEEE Trans Control Syst Technol       Date:  2014-01       Impact factor: 5.485

8.  Virtual Constraint Control of a Powered Prosthetic Leg: From Simulation to Experiments with Transfemoral Amputees.

Authors:  Robert D Gregg; Tommaso Lenzi; Levi J Hargrove; Jonathon W Sensinger
Journal:  IEEE Trans Robot       Date:  2014-12       Impact factor: 5.567

9.  Control of a powered ankle-foot prosthesis based on a neuromuscular model.

Authors:  Michael F Eilenberg; Hartmut Geyer; Hugh Herr
Journal:  IEEE Trans Neural Syst Rehabil Eng       Date:  2010-01-12       Impact factor: 3.802

10.  Experimental effective shape control of a powered transfemoral prosthesis.

Authors:  Robert D Gregg; Tommaso Lenzi; Nicholas P Fey; Levi J Hargrove; Jonathon W Sensinger
Journal:  IEEE Int Conf Rehabil Robot       Date:  2013-06
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  2 in total

1.  Prosthetic Leg Control in the Nullspace of Human Interaction.

Authors:  Robert D Gregg; Anne E Martin
Journal:  Proc Am Control Conf       Date:  2016-08-01

2.  Virtual Constraint Control of a Powered Prosthetic Leg: From Simulation to Experiments with Transfemoral Amputees.

Authors:  Robert D Gregg; Tommaso Lenzi; Levi J Hargrove; Jonathon W Sensinger
Journal:  IEEE Trans Robot       Date:  2014-12       Impact factor: 5.567

  2 in total

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