ICASSP 2024accepted0 citations

Digital Task-Oriented Communication with Hardware-Limited Task-Based Quantization

Wuxia Hu, Yang Yang, Yonina C. Eldar, Chunyan Feng, Caili Guo

Abstract

Task-oriented communication exploits the task to improve communication efficiency. Most existing works on task-oriented communication transmit analog signals without quantization, which limits its application in digital communication systems. This paper studies digital task-oriented communication systems with hardware-limited scalar quantization (TOC-SQ) for computation-limited scenarios such as the Internet of Things, where the source data is encoded by a source encoder and then quantized by hardware-limited quantizers for digital transmission. Accordingly, the receiver contains a source decoder to decode the received signal. Our goal is to minimize the mean squared error (MSE) between the transmitted and received task-relevant signals to achieve optimal task performance under a certain bit budget. In particular, we first establish a theoretical analysis framework for TOC-SQ. Then, the closed-form expressions of the source encoder and decoder are derived for linear tasks. Finally, the lower bound of the MSE between the transmitted and received task-relevant information is analyzed to evaluate the task performance. Simulation results verify that the proposed TOC-SQ achieves 6.9 dB MSE gains in frequency-selective channels compared with analog TOC systems.

BibTeX
@inproceedings{icassp2024_digitaltaskorien,
  title = {Digital Task-Oriented Communication with Hardware-Limited Task-Based Quantization},
  author = {Wuxia Hu and Yang Yang and Yonina C. Eldar and Chunyan Feng and Caili Guo},
  booktitle = {ICASSP 2024},
  year = {2024}
}