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High Accuracy Source Localization Based on Parallel Factor Analysis of TDOA in the Cross Correlation Domain
Journal article   Peer reviewed

High Accuracy Source Localization Based on Parallel Factor Analysis of TDOA in the Cross Correlation Domain

Jianfeng Li, Hang Jiang, Yingying Li, Fuhui Zhou, Qihui Wu, Tony Q. S. Quek and Naofal Al-Dhahir
IEEE transactions on communications, Vol.73(9), pp.7090-7104
01/09/2025

Abstract

Accuracy Computational modeling Correlation cross-power spectrum Direct position determination (DPD) Estimation Frequency estimation Heuristic algorithms Location awareness parallel factor (PARAFAC) analysis Signal to noise ratio time difference of arrival (TDOA) Time measurement Time-frequency analysis
It is challenging to ensure both high accuracy and low complexity when localizing radiation sources. To address this challenge, we propose two novel methods leveraging time difference of arrival (TDOA) measurements. Specifically, we introduce a TDOA estimation method and a direct position determination (DPD) method based on parallel factor (PARAFAC) analysis in the cross-correlation domain. Initially, multiple sensors synchronously capture the source signal, and the cross-correlation function between signals received from a reference sensor and other sensors is calculated. Then, the primary cross-spectrum data undergoes an expansion and integration process to establish the PARAFAC model. Through cross-spectrum expansion, virtual nodes are formed, which further improves the estimation performance. The TDOA estimates for each sensor are obtained by normalizing and extracting the phase from this matrix. Additionally, we introduce a novel DPD method tailored for multipath propagation scenarios. Simulations and real-world measurements demonstrate the superiority and effectiveness of our proposed methods compared with cutting-edge methods.

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