使用LoRaWAN进行拥堵监控的智能交通灯

R. M. Nor, F. Zaman, Shamry Mubdi
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引用次数: 35

摘要

交通信号灯拥堵通常发生在车辆过多的城市地区。这个问题推动了对创新的需求,并提供了有效的解决方案。在红绿灯处监控交通拥堵程度的智能系统将成为取代不再实用的旧系统的新选择。实施物联网(IoT)技术将为监控和创建基于传感器读数的拥塞模型提供充分的优势。在每条车道上放置多个传感器将在检测车辆和提高收集数据的准确性方面具有巨大的优势。为了从每个传感器收集数据,利用LoRaWAN技术,其特点是低功耗广域网,低成本的实施和通信是安全的双向互联网思维。终端节点到网关之间使用的无线电频率范围估计约为15公里半径。进行了一系列的测试来估计信号的范围,并给出了肯定的结果。每个车道的拥堵程度将显示在Grafana仪表板上,并可以计算算法。这为该项目的实施提供了巨大的优势,特别是该项目的范围将集中在交通拥堵严重的城市地区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart traffic light for congestion monitoring using LoRaWAN
Traffic light congestion normally occurs in urban areas where the number of vehicles is too many on the road. This problem drives the need for innovation and provide efficient solutions regardless this problem. Smart system that will monitor the congestion level at the traffic light will be a new option to replace the old system which is not practical anymore. Implementing internet of thinking (IoT) technology will provide the full advantage for monitoring and creating a congestion model based on sensor readings. Multiple sensor placements for each lane will give a huge advantage in detecting vehicle and increasing the accuracy in collecting data. To gather data from each sensor, the LoRaWAN technology is utilized where it features low power wide area network, low cost of implementation and the communication is secure bi-directional for the internet of thinking. The radio frequency used between end nodes to gateways range is estimated around 15-kilometer radius. A series of test is carried out to estimate the range of signal and it gives a positive result. The level of congestion for each lane will be displayed on Grafana dashboard and the algorithm can be calculated. This provides huge advantages to the implementation of this project, especially the scope of the project will be focus in urban areas where the level of congestion is bad.
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