Density Evolution Analysis of Node-Based Verification-Based Algorithms in Compressive Sensing
Yaser Eftekhari, Anoosheh Heidarzadeh, Amir H. Banihashemi, Ioannis, Lambadaris

TL;DR
This paper introduces a simplified and accurate density evolution analysis for node-based verification algorithms in compressive sensing, predicting their performance asymptotically and validated by simulations.
Contribution
It develops a novel density evolution approach for NB-VB algorithms, overcoming limitations of previous differential equation methods.
Findings
Analysis accurately predicts unverified elements over iterations
Method simplifies performance prediction compared to existing techniques
Simulation results confirm the asymptotic analysis for large signals
Abstract
In this paper, we present a new approach for the analysis of iterative node-based verification-based (NB-VB) recovery algorithms in the context of compressive sensing. These algorithms are particularly interesting due to their low complexity (linear in the signal dimension ). The asymptotic analysis predicts the fraction of unverified signal elements at each iteration in the asymptotic regime where . The analysis is similar in nature to the well-known density evolution technique commonly used to analyze iterative decoding algorithms. To perform the analysis, a message-passing interpretation of NB-VB algorithms is provided. This interpretation lacks the extrinsic nature of standard message-passing algorithms to which density evolution is usually applied. This requires a number of non-trivial modifications in the analysis. The analysis tracks the average…
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Taxonomy
TopicsSparse and Compressive Sensing Techniques · Advanced Wireless Communication Techniques · Wireless Communication Security Techniques
