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A Class of Predefined-Time Stabilizing Controllers for Nonholonomic Systems | IEEE Conference Publication | IEEE Xplore

A Class of Predefined-Time Stabilizing Controllers for Nonholonomic Systems


Abstract:

The design of a class of predefined-time stabilizing controller for a class uncertain nonholonomic systems in chained form is investigated in this paper. First, some modi...Show More

Abstract:

The design of a class of predefined-time stabilizing controller for a class uncertain nonholonomic systems in chained form is investigated in this paper. First, some modifications to the classical fixed-time algorithms for first and second order systems are introduced. These modified algorithms, which are developed under the concept of predefined-time stability, reduce the settling time overestimation drawback suffered by the classical fixed-time algorithm. Unlike current finite-time and fixed-time schemes, an upper bound of the settling time is easily tunable through a simple selection of the parameters of the controllers. Then, based on the developed first and second-order algorithms, a switching control strategy is designed to guarantee the predefined-time stability of the chained-form nonholonomic system. Finally, a simulation example is presented to show the effectiveness of the proposed method.
Date of Conference: 01-04 July 2019
Date Added to IEEE Xplore: 15 August 2019
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Conference Location: Akko, Israel

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