Simultaneous Information and Energy Transmission with Short Packets and Finite Constellations

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Hauptverfasser: Zuhra, Sadaf ul, Perlaza, Samir M., Poor, H. Vincent, Skoglund, Mikael
Format: Preprint
Veröffentlicht: 2024
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author Zuhra, Sadaf ul
Perlaza, Samir M.
Poor, H. Vincent
Skoglund, Mikael
author_facet Zuhra, Sadaf ul
Perlaza, Samir M.
Poor, H. Vincent
Skoglund, Mikael
contents This paper characterizes the trade-offs between information and energy transmission over an additive white Gaussian noise channel in the finite block-length regime with finite channel input symbols. These trade-offs are characterized in the form of inequalities involving the information transmission rate, energy transmission rate, decoding error probability (DEP) and energy outage probability (EOP) for a given finite block-length code. The first set of results identify the set of necessary conditions that a given code must satisfy for simultaneous information and energy transmission. Following this, a novel method for constructing a family of codes that can satisfy a target information rate, energy rate, DEP and EOP is proposed. Finally, the achievability results identify the set of tuples of information rate, energy rate, DEP and EOP that can be simultaneously achieved by the constructed family of codes.
format Preprint
id arxiv_https___arxiv_org_abs_2408_07807
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Simultaneous Information and Energy Transmission with Short Packets and Finite Constellations
Zuhra, Sadaf ul
Perlaza, Samir M.
Poor, H. Vincent
Skoglund, Mikael
Information Theory
This paper characterizes the trade-offs between information and energy transmission over an additive white Gaussian noise channel in the finite block-length regime with finite channel input symbols. These trade-offs are characterized in the form of inequalities involving the information transmission rate, energy transmission rate, decoding error probability (DEP) and energy outage probability (EOP) for a given finite block-length code. The first set of results identify the set of necessary conditions that a given code must satisfy for simultaneous information and energy transmission. Following this, a novel method for constructing a family of codes that can satisfy a target information rate, energy rate, DEP and EOP is proposed. Finally, the achievability results identify the set of tuples of information rate, energy rate, DEP and EOP that can be simultaneously achieved by the constructed family of codes.
title Simultaneous Information and Energy Transmission with Short Packets and Finite Constellations
topic Information Theory
url https://arxiv.org/abs/2408.07807