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A stable analytical solution method for car-like robot trajectory tracking and optimization

delete2020-01-01
delete28
PRE
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K
Keyvan Majd
M
Mohammad Razeghi-Jahromi
A
Abdollah Homaifar *
DOI:10.1109/JAS.2019.1911816delete
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Abstract

Abstract

En 中文
In this paper, the car-like robot kinematic model trajectory tracking and control problem is revisited by exploring an optimal analytical solution which guarantees the global exponential stability of the tracking error. The problem is formulated in the form of tracking error optimization in which the quadratic errors of the position, velocity, and acceleration are minimized subject to the rear-wheel car-like robot kinematic model. The input-output linearization technique is employed to transform the nonlinear problem into a linear formulation. By using the variational approach, the analytical solution is obtained, which is guaranteed to be globally exponentially stable and is also appropriate for real-time applications. The simulation results demonstrate the validity of the proposed mechanism in generating an optimal trajectory and control inputs by evaluating the proposed method in an eight-shape tracking scenario.
Keywords:
Global asymptotic stability
input-output linearization
optimal control
trajectory tracking
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Journal

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IEEE-CAA Journal of Automatica Sinica
IF:
19.2
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1.4K
Citations:
1.1W

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Arizona State University
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Papers: 2.5W
Citations: 4.2W
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abb
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Papers: 1.0K
Citations: 1
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arizona state university-tempe
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Citations: 13
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