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Compressed Sensor Caching and Collaborative Sparse Data Recovery with Anchor Alignment
Journal article   Peer reviewed

Compressed Sensor Caching and Collaborative Sparse Data Recovery with Anchor Alignment

翊蓁 楊, 明勳 楊, 卓諭 吳 and 樂文 洪
Transactions on Signal Processing, Vol.73, pp.2912-2927
07/2025

Abstract

compressed sensing;wireless sensor network;deep learning;ADMM

This work examines the compressed sensor caching problem in wireless sensor networks and devises efficient distributed sparse data recovery algorithms enabled by collaboration among multiple caches. In this problem, each cache is only allowed to access measurements from a small subset of sensors within its vicinity to reduce both cache size and data acquisition overhead. To achieve reliable data recovery with limited access to measurements, we propose a distributed sparse data recovery method, called the collaborative sparse recovery by anchor alignment (CoSR-AA) algorithm, where collaboration among caches is enabled by aligning their locally recovered data at a few anchor nodes. The proposed algorithm is based on the consensus alternating direction method of multipliers (ADMM) algorithm but with message exchange that is reduced by considering the proposed anchor alignment strategy. Then, by the deep unfolding of the ADMM iterations, we further propose the Deep CoSR-AA algorithm that can be used to significantly reduce the number of iterations. We obtain a graph neural network architecture where message exchange is done more efficiently by an embedded autoencoder. Simulations are provided to demonstrate the effectiveness of the proposed collaborative recovery algorithms in terms of the improved reconstruction quality and the reduced communication overhead due to anchor alignment.

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