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Field testing of Martlet wireless sensing system on an in-service pre-stressed concrete highway bridge

机译:在役预应力混凝土公路桥梁Martlet无线传感系统的现场测试

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In structural sensing applications, wireless sensing systems have drawn great interest owing to faster installation process and lower system cost compared to the traditional cabled systems. As a new-generation wireless sensing system, Martlet features high-speed data acquisition and extensible layout, which allows easy interfacing with various types of sensors. This paper presents a field test of the Martlet sensing system installed at an in-service pre-stressed concrete highway bridge on SRI 13 over Dry Creek in Bartow County, Georgia. Four types of sensors are interfaced with Martlet in this test, including accelerometers, strain gages, strain transducers and magnetostrictive displacement sensors. In addition, thermocouples are used to monitor the temperature change of the bridge through the day. The acceleration, strain and displacement response of the bridge due to traffic and ambient excitations are measured. To obtain the modal properties of the bridge, hammer impact tests are also performed. The results from the field test demonstrate the reliability of the Martlet wireless sensing system. In addition, detailed modal properties of the bridge are extracted from the acceleration data collected in the test.
机译:在结构感测应用中,由于与传统的有线系统相比更快的安装过程和更低的系统成本,无线感测系统引起了极大的兴趣。 Martlet作为新一代无线传感系统,具有高速数据采集和可扩展的布局,可轻松与各种类型的传感器接口。本文介绍了安装在佐治亚州Bartow县Dry Creek上SRI 13上正在使用的预应力混凝土公路桥梁上的Martlet传感系统的现场测试。在此测试中,四种类型的传感器与Martlet相连,包括加速度计,应变计,应变传感器和磁致伸缩位移传感器。此外,热电偶用于监控桥梁的温度变化。测量了由于交通和环境激励引起的桥梁的加速度,应变和位移响应。为了获得桥梁的模态特性,还进行了锤击测试。现场测试的结果证明了Martlet无线传感系统的可靠性。此外,还从测试中收集的加速度数据中提取了桥梁的详细模态特性。

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