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Relative Pose Estimation for Nonholonomic Robot Formation with UWB-IO Measurements (Extended version)

Robotics 2026-04-15 v5

Abstract

This article studies the problem of distributed formation control for multiple robots by using onboard ultra wide band (UWB) distance and inertial odometer (IO) measurements. Although this problem has been widely studied, a fundamental limitation of most works is that they require each robot's pose and sensor measurements are expressed in a common reference frame. However, it is inapplicable for nonholonomic robot formations due to the practical difficulty of aligning IO measurements of individual robot in a common frame. To address this problem, firstly, a concurrent-learning based estimator is firstly proposed to achieve relative localization between neighboring robots in a local frame. Different from most relative localization methods in a global frame, both relative position and orientation in a local frame are estimated with only UWB ranging and IO measurements. Secondly, to deal with information loss caused by directed communication topology, a cooperative localization algorithm is introduced to estimate the relative pose to the leader robot. Thirdly, based on the theoretical results on relative pose estimation, a distributed formation tracking controller is proposed for nonholonomic robots. Both 3D and 2D real-world experiments conducted on aerial robots and grounded robots are provided to demonstrate the effectiveness of the proposed method.

Keywords

Cite

@article{arxiv.2411.05481,
  title  = {Relative Pose Estimation for Nonholonomic Robot Formation with UWB-IO Measurements (Extended version)},
  author = {Kunrui Ze and Wei Wang and Shuoyu Yue and Guibin Sun and Kexin Liu and Jinhu Lü},
  journal= {arXiv preprint arXiv:2411.05481},
  year   = {2026}
}

Comments

17 pages, 26 figures

R2 v1 2026-06-28T19:52:52.767Z