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Structural Displacement, Velocity and Acceleration Measurement System based on ccelerometer and GPS-RTK for Large-scale Civil Structures

机译:基于Ccellerometer和GPS-RTK进行大型民间结构的结构位移,速度和加速度测量系统

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The latest displacement and velocity sensors such as LDV and LiDAR'have limited application in large-scale civil structures, because it is difficult to find an appropriate sensor installation position on which the sensors can aim at the measurement point. Instead, GPS-RTK is widely applied to large civil engineering structures, but GPS-RTK has low sampling rate, accuracy and precision, and is frequently affected by environmental conditions such as bad weather and surrounded obstacles. In the study, a new structural response measurement system has been developed for the online measurement of displacement, velocity and acceleration of large-scale civil structures. The proposed system estimates the structural responses with high sampling rate, accuracy and precision by fusing measurements obtained from GPS-RTK and accelerometer based on two-stage Kalman filter. The proposed system has the following advantages over GPS-RTK sensors: (1) 6 DOF displacement, velocity and acceleration can be measured simultaneously with a single sensor system, (2) The accuracy (around 2 mm) and sampling rate (up to 100 Hz) of the proposed system are better than those of GPS-RTK, and (3) The performance of the system is less affected by environmental conditions. To verify the performance of the proposed system, a field experiments at Yeongjong grand bridge was performed.
机译:最新的位移和速度传感器,如LDV和LIDAR在大型民用结构中的应用,因为难以找到一个适当的传感器安装位置,传感器可以在测量点处的目标。相反,GPS-RTK广泛应用于大型土木工程结构,但GPS-RTK具有较低的采样率,准确性和精度,并且经常受到恶劣天气和周围障碍物等环境条件的影响。在该研究中,已经开发了一种新的结构响应测量系统,用于在线测量大规模民用结构的位移,速度和加速度。所提出的系统通过基于两级卡尔曼滤波器融合从GPS-RTK和加速度计获得的融合测量,估计具有高采样速率,精度和精度的结构响应。所提出的系统具有以下优点,优于GPS-RTK传感器:(1)6 DOF位移,速度和加速度可以与单个传感器系统同时测量,(2)精度(约2 mm)和采样率(最多100个)拟议系统的Hz优于GPS-RTK的HZ,(3)系统的性能较小受环境条件的影响。为了验证所提出的系统的表现,进行了渝东大桥的田间实验。

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