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Asymptotic Properties of One-Bit Distributed Detection with Ordered Transmissions

2011/03/26 by Paolo Braca, Stefano Marano, Braca, Paolo +4
Computer Science · Mathematics · #Applications (stat.AP) #Distributed Sensor Networks and Detection Algorithms #Energy Efficient Wireless Sensor Networks #FOS: Computer and information sciences #Information Theory (cs.IT) #Multiagent Systems (cs.MA) #Target Tracking and Data Fusion in Sensor Networks #cs.IT #cs.MA #math.IT #stat.AP

paper · pdf · doi:10.48550/arxiv.1103.5142

Submitted to IEEE Signal Processing

arxiv created 2011/03/26 · openalex publication_date 2011/03/26 · arxiv updated 2011/03/29 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

Consider a sensor network made of remote nodes connected to a common fusion center. In a recent work Blum and Sadler [1] propose the idea of ordered transmissions -sensors with more informative samples deliver their messages first- and prove that optimal detection performance can be achieved using only a subset of the total messages. Taking to one extreme this approach, we show that just a single delivering allows making the detection errors as small as desired, for a sufficiently large network size: a one-bit detection scheme can be asymptotically consistent. The transmission ordering is based on the modulus of some local statistic (MO system). We derive analytical results proving the asymptotic consistency and, for the particular case that the local statistic is the log-likelihood (ℓ-MO system), we also obtain a bound on the error convergence rate. All the theorems are proved under the general setup of random number of sensors. Computer experiments corroborate the analysis and address typical examples of applications including: non-homogeneous Poisson-deployed networks, detection by per-sensor censoring, monitoring of energy-constrained phenomenon.

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