Archive/Utilizing AoA for Decision Gathering in Optical Wireless Sensor Networks
Utilizing AoA for Decision Gathering in Optical Wireless Sensor Networks
Abdullah Alhasanat, Ahed Aleid, Abdelrahman Abushattal et al.
8. Mai 2026
en

Abstract

Optical Wireless Sensor Networks (OWSNs) have emerged as a promising solution for energy-efficient and secure data collection in free-space optical (FSO) environments. A key challenge in such networks is minimizing the decision error rate (DER) during decision aggregation at the central entity (CE). Building on earlier Time-Difference-of-Arrival (TDoA) reporting methods, this paper introduces an Angle-of-Arrival (AoA) framework for decision gathering. In the proposed scheme, sensor nodes equipped with Corner Cube Retro-reflectors (CCRs) passively communicate their local decisions, while the CE identifies such decisions based on AoA estimation. A closed-form expression for the DER is derived, incorporating false-alarm and missed-detection probabilities, and is validated through Monte Carlo simulations. Comparative evaluation against TDoA, Single Wavelength Parallel (SWP), and Multiple Wavelength Series (MWS) schemes shows that the AoA-based approach achieves consistently lower DERs, particularly in high-SNR regimes and larger node counts, closely approaching the theoretical lower bound. These results highlight AoA as a practical and scalable alternative to conventional decision-gathering methods in OWSNs.

IPC Classification

G06H04H01

Keywords

utilizingdecisiongatheringopticalwirelesssensornetworksjournalactuatorowsnsemergedpromisingsolutionenergy-efficientsecuredatacollectionfree-spaceenvironmentschallengesuchminimizingerrorrate
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