The Impact of Interference Cognition on the Reliability and Capacity of Industrial Wireless Communications

Fuente: arXiv
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Main Authors: Guo, Yichen, Peng, Tao, Zhao, Yujie, Niu, Yijing, Wang, Wenbo
Format: Preprint
Published: 2026
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author Guo, Yichen
Peng, Tao
Zhao, Yujie
Niu, Yijing
Wang, Wenbo
author_facet Guo, Yichen
Peng, Tao
Zhao, Yujie
Niu, Yijing
Wang, Wenbo
contents Interference significantly impacts the performance of industrial wireless networks, particularly n severe interference environments with dense networks reusing spectrum resources intensively. Although delicate interference information is often unavailable in conventional networks, emerging interference cognition techniques can compensate this critical problem with possibly different precision. This paper investigates the relationship between precision of interference cognition and system performance. We propose a novel performance analysis framework that quantifies the impact of varying interference information precision on achievable rate. Specifically, leveraging the Nakagami-$\mathbf{m}$ fading channel model, we analytically and asymptotically analyze the average achievable rate in the finite blocklength regime for different precision levels of signal and interference information. Our findings reveal the critical importance of identifying per-link interference information for achieving optimal performance. Additionally, obtaining instantaneous information is more beneficial for signal links.
format Preprint
id arxiv_https___arxiv_org_abs_2601_14164
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The Impact of Interference Cognition on the Reliability and Capacity of Industrial Wireless Communications
Guo, Yichen
Peng, Tao
Zhao, Yujie
Niu, Yijing
Wang, Wenbo
Systems and Control
Interference significantly impacts the performance of industrial wireless networks, particularly n severe interference environments with dense networks reusing spectrum resources intensively. Although delicate interference information is often unavailable in conventional networks, emerging interference cognition techniques can compensate this critical problem with possibly different precision. This paper investigates the relationship between precision of interference cognition and system performance. We propose a novel performance analysis framework that quantifies the impact of varying interference information precision on achievable rate. Specifically, leveraging the Nakagami-$\mathbf{m}$ fading channel model, we analytically and asymptotically analyze the average achievable rate in the finite blocklength regime for different precision levels of signal and interference information. Our findings reveal the critical importance of identifying per-link interference information for achieving optimal performance. Additionally, obtaining instantaneous information is more beneficial for signal links.
title The Impact of Interference Cognition on the Reliability and Capacity of Industrial Wireless Communications
topic Systems and Control
url https://arxiv.org/abs/2601.14164