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A Preliminary Experimental Study on Control Technology of Pipeline Robots based on Visible Light Communication

机译:基于可见光通信的流水线机器人控制技术的初步实验研究

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Pipeline inspection robots are recently expected to be deployed to pipelines with longer distance and more complex configuration. These robots require high performance in wireless communication among robots and outside. The radio frequency or infrared radiation frequency can be one of the promising wireless communication method, but they would have drawbacks in pipeline environments, such as electromagnetic interference and low energy efficiency. In this study, we focus on visible light communication (VLC), which has a high transmission rate, strong anti-interference capability, and large bandwidth, compared with the above methods. VLC also has an interesting feature that can simultaneously realize data communication and illuminating dark pipeline environment for pipe robot. As a preliminary study of VLC application, we developed a control system based on VLC for a wheeled robot, which includes a VLC transmitter and receiver. The transmitter and receiver can encode and decode the light signals. Finally, we tested the signal waveform of transmitter and receiver, and evaluate the performance of this system in real pipeline robot. The experimental results revealed that the proposed VLC system could achieve a reliable signal transmission and provide well control and illumination for the robot in the pipe.
机译:热水管道检查机器人最近预计将部署到具有更长距离和更复杂配置的管道。这些机器人在机器人和外部之间的无线通信中需要高性能。射频或红外辐射频率可以是有前途的无线通信方法之一,但它们将在管道环境中具有缺点,例如电磁干扰和低能量效率。在这项研究中,与上述方法相比,我们专注于可见光通信(VLC),其具有高传输速率,强抗干扰能力和大带宽。 VLC还具有一个有趣的功能,可以同时实现数据通信和用于管机器人的暗管道环境。作为VLC应用的初步研究,我们开发了一种基于VLC的控制系统,用于轮式机器人,其包括VLC发射器和接收器。发送器和接收器可以编码和解码光信号。最后,我们测试了发射器和接收器的信号波形,并评估了在真正的管道机器人中的该系统的性能。实验结果表明,所提出的VLC系统可以实现可靠的信号传输,并为管道中的机器人提供良好的控制和照明。

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