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首页> 外文期刊>International Journal of Distributed Sensor Networks >Wireless sensor networks and structural health monitoring Experiences with slab track infrastructures
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Wireless sensor networks and structural health monitoring Experiences with slab track infrastructures

机译:无线传感器网络和结构健康监测平板轨道基础设施的经验

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Slab track systems have the potential to become a more sustainable option for high-speed railway infrastructures than traditional ballasted tracks. Traditionally, the systems that monitor these infrastructures have been costly, but advances in the last few decades have made the use of wireless sensor networks within these infrastructures a feasible solution that can be used to evaluate their degradation for failure detection and prediction. Since the cost of these systems is steadily decreasing, it is now possible to use permanent wireless sensor networks as an integral part of the overall system to pave the way for smart infrastructures that can get real-time information about the structural health of the infrastructure at a relatively low cost. In order to show the suitability of this kind of system to monitor the structural health, three demonstrators, developed in the context of the FASTRACK project, related to the design and construction of a monitoring system for slab track systems that measures vibrations and displacements in the track, are presented. FASTRACK uses an innovative approach where data read by sensors are sent to passing trains, which are used as data mules to upload the information to a remote server. On arrival at the station, the data are stored in a database, which is queried by an application to extract relevant information by means of analysis algorithms to detect and predict failures. The first real scenario tests the limits of the system under stress situations. The second one tests the system in an actual, installed slab track to analyze the suitability of the communication architecture and to study a transition zone between slab tracks to a ballast track. The last scenario deals with the data mule performance tests.
机译:平板轨道系统有可能成为高速铁路基础设施比传统道ast轨道更可持续的选择。传统上,监视这些基础架构的系统成本很高,但是最近几十年来的进步使这些基础架构内使用无线传感器网络成为可行的解决方案,可用于评估其退化以进行故障检测和预测。由于这些系统的成本在稳步下降,因此现在有可能将永久性无线传感器网络用作整个系统的组成部分,从而为智能基础架构铺平道路,这些基础架构可以在以下位置获取有关基础架构结构健康状况的实时信息成本相对较低。为了显示这种系统对结构健康状况进行监测的适用性,在FASTRACK项目的背景下开发了三个演示器,涉及用于测量轨道振动和位移的平板轨道系统监测系统的设计和建造。轨道,介绍。 FASTRACK使用一种创新的方法,将传感器读取的数据发送到通过的火车,火车用作数据mu子,将信息上传到远程服务器。到达工作站后,数据将存储在数据库中,应用程序会查询该数据库,以通过分析算法来检测和预测故障,以提取相关信息。第一个真实场景测试了压力情况下系统的限制。第二部分在实际安装的平板轨道上测试系统,以分析通信体系结构的适用性,并研究平板轨道到压载轨道之间的过渡区域。最后一种情况涉及数据m性能测试。

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