Dual-Mode Wireless Devices for Adaptive Pull and Push-Based Communication

Fuente: arXiv
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Main Authors: Cavallero, Sara, Saggese, Fabio, Shiraishi, Junya, Leyva-Mayorga, Israel, Pandey, Shashi Raj, Buratti, Chiara, Popovski, Petar
Format: Preprint
Published: 2025
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author Cavallero, Sara
Saggese, Fabio
Shiraishi, Junya
Leyva-Mayorga, Israel
Pandey, Shashi Raj
Buratti, Chiara
Popovski, Petar
author_facet Cavallero, Sara
Saggese, Fabio
Shiraishi, Junya
Leyva-Mayorga, Israel
Pandey, Shashi Raj
Buratti, Chiara
Popovski, Petar
contents This paper introduces a dual-mode communication framework for wireless devices that integrates query-driven (pull) and event-driven (push) transmissions within a unified time-frame structure. Devices typically respond to information requests in pull mode, but if an anomaly is detected, they preempt the regular response to report the critical condition. Additionally, push-based communication is used to proactively send critical data without waiting for a request. This adaptive approach ensures timely, context-aware, and efficient data delivery across different network conditions. To achieve high energy efficiency, we incorporate a wake-up radio mechanism and we design a tailored medium access control (MAC) protocol that supports data traffic belonging to the different communication classes. A comprehensive system-level analysis is conducted, accounting for the wake-up control operation and evaluating three key performance metrics: the success probability of anomaly reports (push traffic), the success probability of query responses (pull traffic) and the total energy consumption. Numerical results characterize the system's behavior and highlight the inherent trade-off in success probabilities between push- and pull-based traffic as a function of allocated communication resources. Our analysis demonstrates that the proposed approach reduces energy consumption by up to 30% compared to a traditional approach, while maintaining reliable support for both communication paradigms.
format Preprint
id arxiv_https___arxiv_org_abs_2507_23421
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Dual-Mode Wireless Devices for Adaptive Pull and Push-Based Communication
Cavallero, Sara
Saggese, Fabio
Shiraishi, Junya
Leyva-Mayorga, Israel
Pandey, Shashi Raj
Buratti, Chiara
Popovski, Petar
Networking and Internet Architecture
This paper introduces a dual-mode communication framework for wireless devices that integrates query-driven (pull) and event-driven (push) transmissions within a unified time-frame structure. Devices typically respond to information requests in pull mode, but if an anomaly is detected, they preempt the regular response to report the critical condition. Additionally, push-based communication is used to proactively send critical data without waiting for a request. This adaptive approach ensures timely, context-aware, and efficient data delivery across different network conditions. To achieve high energy efficiency, we incorporate a wake-up radio mechanism and we design a tailored medium access control (MAC) protocol that supports data traffic belonging to the different communication classes. A comprehensive system-level analysis is conducted, accounting for the wake-up control operation and evaluating three key performance metrics: the success probability of anomaly reports (push traffic), the success probability of query responses (pull traffic) and the total energy consumption. Numerical results characterize the system's behavior and highlight the inherent trade-off in success probabilities between push- and pull-based traffic as a function of allocated communication resources. Our analysis demonstrates that the proposed approach reduces energy consumption by up to 30% compared to a traditional approach, while maintaining reliable support for both communication paradigms.
title Dual-Mode Wireless Devices for Adaptive Pull and Push-Based Communication
topic Networking and Internet Architecture
url https://arxiv.org/abs/2507.23421