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March 5, 2026Symmetry0 citationsOpen Access

A Cooperative Navigation Algorithm Based on WGBP for Master–Slave UAV Formations

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LZLin ZhangYLYan LiYYYang Yu

Key Points

  • The aim is to develop a precise navigation method to tackle measurement errors in UAV formations.
  • Proposed a cooperative navigation framework utilizing inertial navigation and satellite positioning.
  • Introduced a CGDOP model for evaluating positioning accuracy through hybrid observation configurations.
  • Implemented a WGBP algorithm for adjusting measurement weights dynamically to reduce interference.
  • WGBP achieved the lowest mean error in 22 out of 24 experimental cases.
  • WGBP recorded the smallest standard deviation in 21 experimental cases compared to traditional methods.
  • Field experiments confirmed WGBP's superior performance in dynamic environmental conditions.

Abstract

To address severe measurement error fluctuations and heterogeneous information source uncertainties in master–slave unmanned aerial vehicle (UAV) formations, a high-precision cooperative navigation method is proposed. Integrating inertial navigation, satellite positioning, and inter-UAV relative distance, the method innovatively introduces three key components: a multi-source information fusion-based cooperative navigation framework for accurate formation state estimation, a cooperative geometric dilution of precision (CGDOP) model based on hybrid observation configurations for positioning accuracy evaluation, and a dynamic-weight Gaussian belief propagation (WGBP) algorithm for adaptive measurement weight adjustment to suppress low-quality observation interference. Experiments demonstrate that WGBP achieves the lowest mean error in 22 out of 24 cases and the smallest standard deviation in 21 cases compared with EKF, WGP, HRGBP, and WGBP. Empirical field experiments further demonstrate consistent superiority of WGBP in dynamic environments.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69a91dc3d6127c7a504c0e55https://doi.org/10.3390/sym18030440
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