Deep Learning and Matrix Completion-aided IoT Network Localization in the Outlier Scenarios

Fuente: arXiv
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1. Verfasser: Kim, Sunwoo
Format: Preprint
Veröffentlicht: 2025
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author Kim, Sunwoo
author_facet Kim, Sunwoo
contents In this paper, we propose a deep learning and matrix completion aided approach for recovering an outlier contaminated Euclidean distance matrix D in IoT network localization. Unlike conventional localization techniques that search the solution over a whole set of matrices, the proposed technique restricts the search to the set of Euclidean distance matrices. Specifically, we express D as a function of the sensor coordinate matrix X that inherently satisfies the unique properties of D, and then jointly recover D and X using a deep neural network. To handle outliers effectively, we model them as a sparse matrix L and add a regularization term of L into the optimization problem. We then solve the problem by alternately updating X, D, and L. Numerical experiments demonstrate that the proposed technique can recover the location information of sensors accurately even in the presence of outliers.
format Preprint
id arxiv_https___arxiv_org_abs_2508_18225
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Deep Learning and Matrix Completion-aided IoT Network Localization in the Outlier Scenarios
Kim, Sunwoo
Machine Learning
Artificial Intelligence
Information Theory
In this paper, we propose a deep learning and matrix completion aided approach for recovering an outlier contaminated Euclidean distance matrix D in IoT network localization. Unlike conventional localization techniques that search the solution over a whole set of matrices, the proposed technique restricts the search to the set of Euclidean distance matrices. Specifically, we express D as a function of the sensor coordinate matrix X that inherently satisfies the unique properties of D, and then jointly recover D and X using a deep neural network. To handle outliers effectively, we model them as a sparse matrix L and add a regularization term of L into the optimization problem. We then solve the problem by alternately updating X, D, and L. Numerical experiments demonstrate that the proposed technique can recover the location information of sensors accurately even in the presence of outliers.
title Deep Learning and Matrix Completion-aided IoT Network Localization in the Outlier Scenarios
topic Machine Learning
Artificial Intelligence
Information Theory
url https://arxiv.org/abs/2508.18225