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Design and implementation of LED lighting intelligent control system for expressway tunnel entrance based on Internet of things and fuzzy control

机译:基于事物互联网和模糊控制的高速公路隧道入口LED照明智能控制系统的设计与实现

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Due to the special characteristics of highway tunnels and vehicles, the interior of the tunnel is required to provide appropriate lighting to ensure the safety of driving vehicles, especially at the entrance section of the tunnel. At present, most of the tunnel entrance lighting control system only considers one single factor, the brightness outside the tunnel. However, in practice, the required lighting brightness in the tunnel is also related to traffic flow, speed, and other factors. Comprehensively utilizing these factors to improve the control strategy is urgently needed. To deal with this problem, this article has designed a multi-source information acquisition system for tunnel lighting based on the Internet of things technology, which combined with fuzzy control theory in order to develop an intelligent control system for LED lighting at the entrance section of the tunnel. The designed system was implemented and long-term tested in a real highway tunnel. The experimental results have shown that the system designed in this article can automatically control the brightness of the lighting inside the tunnel according to the real-time measurements of the brightness outside the tunnel, traffic flow, speed, and so on. Furthermore, the utilizations of the system can minimize the human and power consumption of tunnel lighting while ensuring the safety of tunnel traffic.
机译:由于高速公路隧道和车辆的特殊特性,需要隧道的内部来提供适当的照明,以确保驱动车辆的安全性,尤其是在隧道的入口部分处。目前,大多数隧道入口照明控制系统仅考虑一个单一因素,隧道外的亮度。然而,在实践中,隧道中所需的照明亮度也与交通流量,速度和其他因素有关。迫切需要全面利用这些因素来改善控制策略。要解决这个问题,本文为基于事物互联网技术的隧道照明设计了一种多源信息采集系统,该技术与模糊控制理论相结合,以开发入口处的LED照明智能控制系统隧道。设计的系统在真正的公路隧道中实施和长期测试。实验结果表明,本文中设计的系统可以根据隧道外部亮度,交通流量,速度等外的实时测量自动控制隧道内部的照明亮度。此外,系统的利用可以使隧道照明的人力和功耗最小化,同时确保隧道流量的安全性。

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