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3-D Velocity Regulation for Nonholonomic Source Seeking Without Position Measurement

Robotics 2016-11-09 v1

Abstract

We consider a three-dimensional problem of steering a nonholonomic vehicle to seek an unknown source of a spatially distributed signal field without any position measurement. In the literature, there exists an extremum seeking-based strategy under a constant forward velocity and tunable pitch and yaw velocities. Obviously, the vehicle with a constant forward velocity may exhibit certain overshoots in the seeking process and can not slow down even it approaches the source. To resolve this undesired behavior, this paper proposes a regulation strategy for the forward velocity along with the pitch and yaw velocities. Under such a strategy, the vehicle slows down near the source and stays within a small area as if it comes to a full stop, and controllers for angular velocities become succinct. We prove the local exponential convergence via the averaging technique. Finally, the theoretical results are illustrated with simulations.

Keywords

Cite

@article{arxiv.1504.06461,
  title  = {3-D Velocity Regulation for Nonholonomic Source Seeking Without Position Measurement},
  author = {Jinbiao Lin and Shiji Song and Keyou You and Cheng Wu},
  journal= {arXiv preprint arXiv:1504.06461},
  year   = {2016}
}

Comments

submitted to IEEE TCST;12 pages, 10 figures