An Achievable Rate-Distortion Region for Joint State and Message Communication over Multiple Access Channels

Fuente: arXiv
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Autori principali: Li, Xinyang, Andrei, Vlad C., Mönich, Ullrich J., Boche, Holger
Natura: Preprint
Pubblicazione: 2024
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author Li, Xinyang
Andrei, Vlad C.
Mönich, Ullrich J.
Boche, Holger
author_facet Li, Xinyang
Andrei, Vlad C.
Mönich, Ullrich J.
Boche, Holger
contents This paper derives an achievable rate-distortion (R-D) region for the state-dependent discrete memoryless multiple access channel (SD-DMMAC), where the generalized feedback and causal side information are present at encoders, and the decoder performs the joint task of message decoding and state estimation. The Markov coding and backward-forward two-stage decoding schemes are adopted in the proof. This scenario is shown to be capable of modeling various integrated sensing and communication (ISAC) applications, including the monostatic-uplink system and multi-modal sensor networks, which are then studied as examples.
format Preprint
id arxiv_https___arxiv_org_abs_2409_17950
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An Achievable Rate-Distortion Region for Joint State and Message Communication over Multiple Access Channels
Li, Xinyang
Andrei, Vlad C.
Mönich, Ullrich J.
Boche, Holger
Information Theory
This paper derives an achievable rate-distortion (R-D) region for the state-dependent discrete memoryless multiple access channel (SD-DMMAC), where the generalized feedback and causal side information are present at encoders, and the decoder performs the joint task of message decoding and state estimation. The Markov coding and backward-forward two-stage decoding schemes are adopted in the proof. This scenario is shown to be capable of modeling various integrated sensing and communication (ISAC) applications, including the monostatic-uplink system and multi-modal sensor networks, which are then studied as examples.
title An Achievable Rate-Distortion Region for Joint State and Message Communication over Multiple Access Channels
topic Information Theory
url https://arxiv.org/abs/2409.17950