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Authors: Sabrine Khriji ; Dhouha El Houssaini and Olfa Kanoun

Affiliation: Chair of Measurement and Sensor Technology, Chemnitz University of Technhology, Reichenhainer Straße 70, 09126 Chemnitz, Germany

Keyword(s): WSN, UWB, RF, Indoor Localization, Energy-saving, Wireless Communication.

Abstract: Wireless Sensor Network (WSN) plays a significant role in modern applications by offering different services, including state machines monitoring, predictive maintenance, and vehicle/store tracking. In such applications, it is crucial to apply localization methods to identify the current location of sensor nodes with high accuracy. Due to the energy constraint of sensor nodes, the energy consumption needs to be highly considered while performing the localization process. In this regard, this paper aims to design an energy-efficient and accurate localization system. Therefore, a novel hybrid solution is designed involving the Ultra Wide Band (UWB) technology and Radio Frequency (RF) transceiver. The UWB is based on Decawave’s DWM1000 transceiver, which provides accurate distance measurements with a high power consumption. To reduce the power consumption, the data transmission between nodes is performed by the low-power RF transceiver. Using this architecture, the experimental validati on shows a good performance in both power consumption and accuracy. The system’s overall power consumption is reduced as well as a 10-centimeter accuracy level is achieved. (More)

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Paper citation in several formats:
Khriji, S.; El Houssaini, D. and Kanoun, O. (2022). Design of an Energy-efficient Hybrid UWB-RF Indoor Distance Estimation System. In Proceedings of the 11th International Conference on Sensor Networks - EWSN-IoT; ISBN 978-989-758-551-7; ISSN 2184-4380, SciTePress, pages 249-255. DOI: 10.5220/0011012700003118

@conference{ewsn-iot22,
author={Sabrine Khriji. and Dhouha {El Houssaini}. and Olfa Kanoun.},
title={Design of an Energy-efficient Hybrid UWB-RF Indoor Distance Estimation System},
booktitle={Proceedings of the 11th International Conference on Sensor Networks - EWSN-IoT},
year={2022},
pages={249-255},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0011012700003118},
isbn={978-989-758-551-7},
issn={2184-4380},
}

TY - CONF

JO - Proceedings of the 11th International Conference on Sensor Networks - EWSN-IoT
TI - Design of an Energy-efficient Hybrid UWB-RF Indoor Distance Estimation System
SN - 978-989-758-551-7
IS - 2184-4380
AU - Khriji, S.
AU - El Houssaini, D.
AU - Kanoun, O.
PY - 2022
SP - 249
EP - 255
DO - 10.5220/0011012700003118
PB - SciTePress