Optimal Binary Signaling for a Two Sensor Gaussian MAC Network

Fuente: arXiv
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Autores principales: Sardellitti, Luca, Takahara, Glen, Alajaji, Fady
Formato: Preprint
Publicado: 2024
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author Sardellitti, Luca
Takahara, Glen
Alajaji, Fady
author_facet Sardellitti, Luca
Takahara, Glen
Alajaji, Fady
contents We consider a two sensor distributed detection system transmitting a binary non-uniform source over a Gaussian multiple access channel (MAC). We model the network via binary sensors whose outputs are generated by binary symmetric channels of different noise levels. We prove an optimal one dimensional constellation design under individual sensor power constraints which minimizes the error probability of detecting the source. Three distinct cases arise for this optimization based on the parameters in the problem setup. In the most notable case (Case III), the optimal signaling design is to not necessarily use all of the power allocated to the more noisy sensor (with less correlation to the source). We compare the error performance of the optimal one dimensional constellation to orthogonal signaling. The results show that the optimal one dimensional constellation achieves lower error probability than using orthogonal channels.
format Preprint
id arxiv_https___arxiv_org_abs_2402_04424
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optimal Binary Signaling for a Two Sensor Gaussian MAC Network
Sardellitti, Luca
Takahara, Glen
Alajaji, Fady
Information Theory
We consider a two sensor distributed detection system transmitting a binary non-uniform source over a Gaussian multiple access channel (MAC). We model the network via binary sensors whose outputs are generated by binary symmetric channels of different noise levels. We prove an optimal one dimensional constellation design under individual sensor power constraints which minimizes the error probability of detecting the source. Three distinct cases arise for this optimization based on the parameters in the problem setup. In the most notable case (Case III), the optimal signaling design is to not necessarily use all of the power allocated to the more noisy sensor (with less correlation to the source). We compare the error performance of the optimal one dimensional constellation to orthogonal signaling. The results show that the optimal one dimensional constellation achieves lower error probability than using orthogonal channels.
title Optimal Binary Signaling for a Two Sensor Gaussian MAC Network
topic Information Theory
url https://arxiv.org/abs/2402.04424