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GNSS Array-Based Multipath Detection Employing UKF on Manifolds

  • Abdelgabar Ahmed*
  • , Tarig Ballal
  • , Xing Liu
  • , Mohanad Ahmed
  • , Tareq Y. Al-Naffouri
  • *Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Global Navigation Satellite Systems (GNSS) applications are often hindered by various sources of error, with multipath interference being one of the most challenging, particularly in urban environments. In this work, we build on previous research by implementing a GNSS array-based multipath detection algorithm, incorporating real-time attitude estimation for dynamic scenarios. The method fuses GNSS and IMU data using an Unscented Kalman Filter (UKF) on a manifold, enabling continuous attitude tracking. The proposed approach utilizes attitude information from satellite combinations to identify and exclude multipath-affected satellites, improving the accuracy of both positioning and attitude determination. To address computational challenges associated with evaluating large numbers of satellite combinations, we propose the use of the Random Sample Consensus (RANSAC) algorithm, which reduces the number of combinations assessed while maintaining high detection performance. Performance evaluations are conducted using trajectories and IMU readings from the KITTI dataset. GNSS observations are simulated based on ground truth positions and satellite ephemeris. The results demonstrate the effectiveness of the proposed approach in detecting satellites affected by multipath interference. Significant improvements in positioning accuracy are observed, particularly in scenarios where a large portion of the visible satellites are contaminated by severe multipath.

Original languageEnglish
Title of host publication2025 IEEE/ION Position, Location and Navigation Symposium, PLANS 2025
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages610-618
Number of pages9
ISBN (Electronic)9798331523176
DOIs
StatePublished - 2025
Externally publishedYes
Event2025 IEEE/ION Position, Location and Navigation Symposium, PLANS 2025 - Salt Lake City, United States
Duration: 28 Apr 20251 May 2025

Publication series

Name2025 IEEE/ION Position, Location and Navigation Symposium, PLANS 2025

Conference

Conference2025 IEEE/ION Position, Location and Navigation Symposium, PLANS 2025
Country/TerritoryUnited States
CitySalt Lake City
Period28/04/251/05/25

Bibliographical note

Publisher Copyright:
© 2025 IEEE.

ASJC Scopus subject areas

  • Aerospace Engineering
  • Automotive Engineering
  • Electrical and Electronic Engineering
  • Electronic, Optical and Magnetic Materials
  • Instrumentation
  • Control and Optimization

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