Neural Network-Based Detection of OCC Signals in Lighting-Constrained Environments: A Museum Use Case

Author:

Rufo Saray1ORCID,Aguiar-Castillo Lidia1,Rufo Julio2ORCID,Perez-Jimenez Rafael1ORCID

Affiliation:

1. IDeTIC, Universidad de Las Palmas de Gran Canaria, Parque Científico-Tecnológico de la ULPGC, Edificio Polivalente II, 2a Planta, C/Practicante Ignacio Rodríguez, s/n, 35017 Las Palmas, Spain

2. Ingenieria Industrial Department, Universidad de La Laguna, Camino San Francisco de Paula s/n, 38200 La Laguna, Spain

Abstract

This research presents a novel approach by applying convolutional neural networks (CNNs) to enhance optical camera communication (OCC) signal detection under challenging indoor lighting conditions. The study utilizes a smartphone app to capture images of an LED lamp that emits 25 unique optical codes at distances of up to four meters. The developed CNN model demonstrates superior accuracy and outperforms traditional methodologies, which often struggle under variable illumination. This advancement provides a robust solution for reliable OCC detection where previous methods underperform, particularly in the tourism industry, where it can be used to create a virtual museum on the Unity platform. This innovation showcases the potential of integrating the application with a virtual environment to enhance tourist experiences. It also establishes a comprehensive visible light positioning (VLP) system, marking a significant advance in using CNN for OCC technology in various lighting conditions. The findings underscore the effectiveness of CNNs in overcoming ambient lighting challenges, paving the way for new applications in museums and similar environments and laying the foundation for future OCC system improvements.

Funder

Spanish Science, Universities and Innovation Ministry

Publisher

MDPI AG

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