Low-Power and Accurate IoT Monitoring Under Radio Resource Constraint

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Shimokasa, Takaho, Yomo, Hiroyuki, Chiariotti, Federico, Shiraishi, Junya, Popovski, Petar
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911066911408128
author Shimokasa, Takaho
Yomo, Hiroyuki
Chiariotti, Federico
Shiraishi, Junya
Popovski, Petar
author_facet Shimokasa, Takaho
Yomo, Hiroyuki
Chiariotti, Federico
Shiraishi, Junya
Popovski, Petar
contents This paper investigates how to achieve both low-power operations of sensor nodes and accurate state estimation using Kalman filter for internet of things (IoT) monitoring employing wireless sensor networks under radio resource constraint. We consider two policies used by the base station to collect observations from the sensor nodes: (i) an oblivious policy, based on statistics of the observations, and (ii) a decentralized policy, based on autonomous decision of each sensor based on its instantaneous observation. This work introduces a wake-up receiver and wake-up signaling to both policies to improve the energy efficiency of the sensor nodes. The decentralized policy designed with random access prioritizes transmissions of instantaneous observations that are highly likely to contribute to the improvement of state estimation. Our numerical results show that the decentralized policy improves the accuracy of the estimation in comparison to the oblivious policy under the constraint on the radio resource and consumed energy when the correlation between the processes observed by the sensor nodes is low. We also clarify the degree of correlation in which the superiority of two policies changes.
format Preprint
id arxiv_https___arxiv_org_abs_2507_15338
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Low-Power and Accurate IoT Monitoring Under Radio Resource Constraint
Shimokasa, Takaho
Yomo, Hiroyuki
Chiariotti, Federico
Shiraishi, Junya
Popovski, Petar
Networking and Internet Architecture
This paper investigates how to achieve both low-power operations of sensor nodes and accurate state estimation using Kalman filter for internet of things (IoT) monitoring employing wireless sensor networks under radio resource constraint. We consider two policies used by the base station to collect observations from the sensor nodes: (i) an oblivious policy, based on statistics of the observations, and (ii) a decentralized policy, based on autonomous decision of each sensor based on its instantaneous observation. This work introduces a wake-up receiver and wake-up signaling to both policies to improve the energy efficiency of the sensor nodes. The decentralized policy designed with random access prioritizes transmissions of instantaneous observations that are highly likely to contribute to the improvement of state estimation. Our numerical results show that the decentralized policy improves the accuracy of the estimation in comparison to the oblivious policy under the constraint on the radio resource and consumed energy when the correlation between the processes observed by the sensor nodes is low. We also clarify the degree of correlation in which the superiority of two policies changes.
title Low-Power and Accurate IoT Monitoring Under Radio Resource Constraint
topic Networking and Internet Architecture
url https://arxiv.org/abs/2507.15338