Next Article in Journal
Amyloid-β Oligomer-Induced Electrophysiological Mechanisms and Electrical Impedance Changes in Neurons
Next Article in Special Issue
A WKNN Indoor Fingerprint Localization Technique Based on Improved Discrimination Capability of RSS Similarity
Previous Article in Journal
Normalizing Large Scale Sensor-Based MWD Data: An Automated Method toward A Unified Database
Previous Article in Special Issue
Wand-Based Calibration of Unsynchronized Multiple Cameras for 3D Localization
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

An Accurate Anchor-Free Contextual Received Signal Strength Approach Localization in a Wireless Sensor Network

Telebec Underground Communications Research Laboratory, University of Quebec at Abitibi-Temiscamingue, 675, 1e Avenue, Val-d’Or, QC J9P 1Y3, Canada
*
Author to whom correspondence should be addressed.
Sensors 2024, 24(4), 1210; https://doi.org/10.3390/s24041210
Submission received: 15 January 2024 / Revised: 12 February 2024 / Accepted: 12 February 2024 / Published: 14 February 2024
(This article belongs to the Special Issue Sensors and Techniques for Indoor Positioning and Localization)

Abstract

Sensor localization remains a crucial function within the context of wireless sensor networks (WSNs) and is a delicate concern that has attracted many researchers’ attention. Undoubtedly, a good distance estimation between different wireless sensors allows us to estimate their accurate locations in the network well. In this article, we present a simple but very effective anchor-free localization scheme for wireless sensor networks called the contextual received signal strength approach (CRSSA) localization scheme. We use the received signal strength (RSS) values and the contextual network connectivity within an anchor-free WSN. We present and thoroughly analyze a novel joint estimation methodology for determining the range, path loss exponent (PLE), and inter-node distances in a composite fading model that addresses small-scale multipath fading and large-scale path loss shadowing effects. We formulate analytical expressions for key parameters, the node’s communication range and the PLE value, as functions of the sensor’s number, the network’s connectivity, and the network density. Once these parameters are estimated, we estimate the inter-node distances and the positions of nodes, with relatively high accuracy, based on the assumed propagation model in a two-dimensional anchor-free WSN. The effectiveness of the CRSSA is evaluated through extensive simulations assuring its estimation accuracy in anchor-free localization.
Keywords: wireless sensor network; network connectivity context; RSS; inter-node estimation; anchor-free; small/large-scale fading channel; localization wireless sensor network; network connectivity context; RSS; inter-node estimation; anchor-free; small/large-scale fading channel; localization

Share and Cite

MDPI and ACS Style

Zaarour, N.; Hakem, N.; Kandil, N. An Accurate Anchor-Free Contextual Received Signal Strength Approach Localization in a Wireless Sensor Network. Sensors 2024, 24, 1210. https://doi.org/10.3390/s24041210

AMA Style

Zaarour N, Hakem N, Kandil N. An Accurate Anchor-Free Contextual Received Signal Strength Approach Localization in a Wireless Sensor Network. Sensors. 2024; 24(4):1210. https://doi.org/10.3390/s24041210

Chicago/Turabian Style

Zaarour, Nour, Nadir Hakem, and Nahi Kandil. 2024. "An Accurate Anchor-Free Contextual Received Signal Strength Approach Localization in a Wireless Sensor Network" Sensors 24, no. 4: 1210. https://doi.org/10.3390/s24041210

APA Style

Zaarour, N., Hakem, N., & Kandil, N. (2024). An Accurate Anchor-Free Contextual Received Signal Strength Approach Localization in a Wireless Sensor Network. Sensors, 24(4), 1210. https://doi.org/10.3390/s24041210

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop