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Summary Review of GPS Technology for Structural Health Monitoring

机译:用于结构健康监测的GPS技术概述

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Over the last two decades, global positioning system (GPS) technology has been developed rapidly and recently applied to civil structures for appropriate monitoring of structural performance. Currently, the GPS technique can only be applied to flexible structures having lower modal frequency ranges, and it still has remaining issues when it comes to obtaining accurate measurements. However, the application of GPS is promising as a monitoring tool because it can measure dynamic characteristics and static displacements in real time, whereas the conventional monitoring system using accelerometers cannot measure static and quasi-static displacements. Furthermore, rapid advancements in GPS devices and algorithms can mitigate erroneous sources of GPS data, and integrated systems using GPS receivers with other supplement sensors are capable of providing accurate measurements. Therefore, GPS technology can provide accurate displacements of structures in real time, and stress and strain conditions of the structures can be computed using finite-element models and numerical analyses. It is also expected that damage localization and severity can be identified using the dynamic characteristics of structures obtained from GPS. This paper summarizes the use of GPS technology for structural health monitoring.
机译:在过去的二十年中,全球定位系统(GPS)技术得到了快速发展,并且最近被应用于土木结构以对结构性能进行适当的监控。当前,GPS技术仅可以应用于具有较低模态频率范围的柔性结构,并且在获得准确的测量时仍然存在问题。但是,GPS的应用前景广阔,因为它可以实时测量动态特性和静态位移,而使用加速度计的传统监控系统无法测量静态和准静态位移。此外,GPS设备和算法的快速发展可以减轻GPS数据的错误来源,并且使用GPS接收器和其他补充传感器的集成系统能够提供准确的测量结果。因此,GPS技术可以实时提供结构的精确位移,并且可以使用有限元模型和数值分析来计算结构的应力和应变条件。还期望可以使用从GPS获得的结构的动态特性来识别损坏的位置和严重程度。本文总结了GPS技术在结构健康监测中的应用。

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