Achievable Information-Energy Region in the Finite Block-Length Regime with Finite Constellations

02/10/2022
by   Sadaf ul Zuhra, et al.
0

This paper characterizes an achievable information-energy region of simultaneous information and energy transmission over an additive white Gaussian noise channel. This analysis is performed in the finite block-length regime with finite constellations. More specifically, a method for constructing a family of codes is proposed and the set of achievable tuples of information rate, energy rate, decoding error probability (DEP) and energy outage probability (EOP) is characterized. Using existing converse results, it is shown that the construction is information rate, energy rate, and EOP optimal. The achieved DEP is, however, sub-optimal.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
11/10/2022

Information-Energy Regions in the Finite Block-Length Regime with Finite Channel Inputs

This paper provides a complete characterization of the information-energ...
research
10/05/2021

Simultaneous Information and Energy Transmission with Finite Constellations

In this paper, the fundamental limits on the rates at which information ...
research
02/13/2022

ORBGRAND Is Almost Capacity-Achieving

Decoding via sequentially guessing the error pattern in a received noisy...
research
02/05/2018

Rate-Energy Region in Wireless Information and Power Transfer: New Receiver Architecture and Practical Modulation

When simultaneous wireless information and power transfer is carried out...
research
12/20/2018

Efficient Error-Correcting Codes in the Short Blocklength Regime

The design of block codes for short information blocks (e.g., a thousand...
research
05/08/2018

Non-Asymptotic Achievable Rates for Gaussian Energy-Harvesting Channels: Best-Effort and Save-and-Transmit

An additive white Gaussian noise (AWGN) energy-harvesting (EH) channel i...
research
04/20/2023

Learning Channel Codes from Data: Performance Guarantees in the Finite Blocklength Regime

This paper examines the maximum code rate achievable by a data-driven co...

Please sign up or login with your details

Forgot password? Click here to reset