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Input-Delayed Control of Uncertain Seat Suspension Systems With Human-Body Model | IEEE Journals & Magazine | IEEE Xplore

Input-Delayed Control of Uncertain Seat Suspension Systems With Human-Body Model


Abstract:

This paper deals with the problem of input-delayed robust H¿ state-feedback controller design for a class of semi-active seat suspension systems with parameter uncertaint...Show More

Abstract:

This paper deals with the problem of input-delayed robust H¿ state-feedback controller design for a class of semi-active seat suspension systems with parameter uncertainties and actuator time delays. A vertical vibration model of human body is employed and put together with the plant of the seat suspension system. The controller design is cast into a convex multi-objective optimization problem with linear matrix inequality (LMI) constraints by defining a Lyapunov functional and using the delay partitioning method. The usefulness and advantages of the proposed controller design methodology are demonstrated through a design example.
Published in: IEEE Transactions on Control Systems Technology ( Volume: 18, Issue: 3, May 2010)
Page(s): 591 - 601
Date of Publication: 18 August 2009

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