Institute for Technological Development and Innovation in Communications (IDeTIC), University of Las Palmas de Gran Canaria, 35001 Las Palmas de Gran Canaria, Spain.
Pi-Lighting, 1950 Sion, Switzerland.
Sensors (Basel). 2024 Apr 26;24(9):2766. doi: 10.3390/s24092766.
This paper presents an experimental evaluation of a wearable light-emitting diode (LED) transmitter in an optical camera communications (OCC) system. The evaluation is conducted under conditions of controlled user movement during indoor physical exercise, encompassing both mild and intense exercise scenarios. We introduce an image processing algorithm designed to identify a template signal transmitted by the LED and detected within the image. To enhance this process, we utilize the dynamics of controlled exercise-induced motion to limit the tracking process to a smaller region within the image. We demonstrate the feasibility of detecting the transmitting source within the frames, and thus limit the tracking process to a smaller region within the image, achieving an reduction of 87.3% for mild exercise and 79.0% for intense exercise.
本文对可穿戴发光二极管(LED)发射器在光相机通信(OCC)系统中的实验性能进行了评估。评估是在室内体育锻炼过程中对用户进行控制的条件下进行的,涵盖了轻度和剧烈运动场景。我们引入了一种图像处理算法,用于识别 LED 传输的模板信号,并在图像中进行检测。为了增强这个过程,我们利用受控运动引起的动态将跟踪过程限制在图像的较小区域内。我们演示了在帧内检测传输源的可行性,从而将跟踪过程限制在图像的较小区域内,在轻度运动时减少了 87.3%,在剧烈运动时减少了 79.0%。