论文标题
部分可观测时空混沌系统的无模型预测
Light Communication for Controlling Industrial Robots
论文作者
论文摘要
光学无线通信(OWC)被视为一种吉祥的通信方法,可以胜过现有的无线技术。它利用LED灯,其辐射强度的细微变化会产生二进制数据流。这是由光电二极管所感知的,将其转换为电信号以进行进一步的解释。本文旨在探索这种新兴技术的使用,以控制无线工业机器人,克服了对电线的需求,尤其是在由于环境因素而无法工作或出于安全原因而无法使用的环境中。我们进行了实验,以确保在各种视线(LOS)和非线视线(NLOS)配置中基于OWC技术对上述范围和“体外”测试的适用性和效率,以观察系统吞吐量和可靠性。还分析了“透明LOS”中的技术性能以及在透明屏障的情况下。
Optical Wireless Communication (OWC) is regarded as an auspicious communication approach that can outperform the existing wireless technology. It utilizes LED lights, whose subtle variation in radiant intensity generate a binary data stream. This is perceived by a photodiode, that converts it to electric signals for further interpretation. This article aims at exploring the use of this emerging technology in order to control wirelessly industrial robots, overcoming the need for wires, especially in environments where radio waves are not working due to environmental factors or not allowed for safety reasons. We performed experiments to ensure the suitability and efficiency of OWC based technology for the aforementioned scope and "in vitro" tests in various Line-of-Sight (LoS) and Non-Line-of-Sight (NLoS) configurations to observe the system throughput and reliability. The technology performance in the "clear LoS" and in the presence of a transparent barrier, were also analyzed.