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Nonholonomic motion planning: steering using sinusoids

IEEE Transactions on Automatic Control · 1993 · Vol. 38(5) · pp. 700–716
Richard M. MurrayShankar Sastry

Abstract

Methods for steering systems with nonholonomic c.onstraints between arbitrary configurations are investigated. Suboptimal trajectories are derived for systems that are not in canonical form. Systems in which it takes more than one level of bracketing to achieve controllability are considered. The trajectories use sinusoids at integrally related frequencies to achieve motion at a given bracketing level. A class of systems that can be steered using sinusoids (claimed systems) is defined. Conditions under which a class of two-input systems can be converted into this form are given.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Control and Dynamics of Mobile RobotsRobotic Path Planning AlgorithmsRobotic Mechanisms and DynamicsControllabilityBracketing (phenomenology)Nonholonomic systemControl theory (sociology)Class (philosophy)Computer scienceMotion (physics)MathematicsControl engineeringArtificial intelligence
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References
A Comprehensive Introduction to Differential Geometry.
American Mathematical Monthly · 1973 · 3,512 citations
Nonlinear controllability and observability
IEEE Transactions on Automatic Control · 1977 · 2,281 citations
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