Context-awareness for Dependable Low-Power IoT

Fuente: arXiv
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Autori principali: Ruiz-Guirola, David E., Raghuwanshi, Prasoon, de Jesus, Gabriel M., Ashraf, Mateen, López, Onel L. A.
Natura: Preprint
Pubblicazione: 2025
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author Ruiz-Guirola, David E.
Raghuwanshi, Prasoon
de Jesus, Gabriel M.
Ashraf, Mateen
López, Onel L. A.
author_facet Ruiz-Guirola, David E.
Raghuwanshi, Prasoon
de Jesus, Gabriel M.
Ashraf, Mateen
López, Onel L. A.
contents Dependability is the ability to consistently deliver trusted and uninterrupted service in the face of operational uncertainties. Ensuring dependable operation in large-scale, energy-constrained Internet of Things (IoT) deployments is as crucial as challenging, and calls for context-aware protocols where context refers to situational or state information. In this paper, we identify four critical context dimensions for IoT networks, namely energy status, information freshness, task relevance, and physical/medium conditions, and show how each one underpins core dependability attributes. Building on these insights, we propose a two-step protocol design framework that incorporates operation-specific context fields. Through three representative use cases, we demonstrate how context awareness can significantly enhance system dependability while imposing only minimal control-plane overhead.
format Preprint
id arxiv_https___arxiv_org_abs_2510_23125
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Context-awareness for Dependable Low-Power IoT
Ruiz-Guirola, David E.
Raghuwanshi, Prasoon
de Jesus, Gabriel M.
Ashraf, Mateen
López, Onel L. A.
Systems and Control
Dependability is the ability to consistently deliver trusted and uninterrupted service in the face of operational uncertainties. Ensuring dependable operation in large-scale, energy-constrained Internet of Things (IoT) deployments is as crucial as challenging, and calls for context-aware protocols where context refers to situational or state information. In this paper, we identify four critical context dimensions for IoT networks, namely energy status, information freshness, task relevance, and physical/medium conditions, and show how each one underpins core dependability attributes. Building on these insights, we propose a two-step protocol design framework that incorporates operation-specific context fields. Through three representative use cases, we demonstrate how context awareness can significantly enhance system dependability while imposing only minimal control-plane overhead.
title Context-awareness for Dependable Low-Power IoT
topic Systems and Control
url https://arxiv.org/abs/2510.23125