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Optimal Methods of RTK-GPS/Accelerometer Integration to Monitor the Displacement of Structures

机译:RTK-GPS /加速度计集成监测结构位移的最佳方法

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摘要

The accurate measurement of diverse displacements of structures is an important index for the evaluation of a structure’s safety. In this study, a comparative analysis was conducted to determine the integrated RTK-GPS/accelerometer method that can provide the most precise structure displacement measurements. For this purpose, three methods of calculating the dynamic displacements from the acceleration data were comparatively analyzed. In addition, two methods of determining dynamic, static, and quasi-static displacements by integrating the displacements measured from the RTK-GPS system and the accelerometer were also comparatively analyzed. To ensure precise comparison results, a cantilever beam was manufactured onto which diverse types of displacements were generated to evaluate the measurement accuracy by method. Linear variable differential transformer (LVDT) measurements were used as references for the evaluation to ensure accuracy. The study results showed that the most suitable method of measuring the dynamic displacement with the accelerometer was to calculate the displacement by filtering and double-integrating the acceleration data using the FIR band-pass filter. The integration method that uses frequency-based displacement extraction was most appropriate for the integrated RTK-GPS/accelerometer method of comprehensively measuring the dynamic, static, and quasi-static displacements.
机译:准确测量结构的各种位移是评估结构安全性的重要指标。在这项研究中,进行了比较分析,以确定可以提供最精确的结构位移测量的集成RTK-GPS /加速度计方法。为此,对从加速度数据计算动态位移的三种方法进行了比较分析。另外,还比较分析了两种通过组合从RTK-GPS系统和加速度计测得的位移来确定动态,静态和准静态位移的方法。为了确保精确的比较结果,制造了一种悬臂梁,在其上产生了各种类型的位移,以通过方法评估测量精度。线性可变差动变压器(LVDT)测量被用作评估的参考,以确保准确性。研究结果表明,使用加速度计测量动态位移的最合适方法是使用FIR带通滤波器对加速度数据进行滤波和双积分,从而计算位移。使用基于频率的位移提取的集成方法最适合于综合测量动态,静态和准静态位移的RTK-GPS /加速度计集成方法。

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