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一种用于自动检测和消除磁悬浮陀螺信号中因瞬时干扰转矩引起的跳变的新方法。

A Novel Method for Automatic Detection and Elimination of the Jumps Caused by the Instantaneous Disturbance Torque in the Maglev Gyro Signal.

机构信息

School of Geology Engineering and Geomatics, Chang'an University, 126 Yanta Road, Xi'an 710054, China.

School of Natural Resources and Surveying, Nanning Normal University, 175 Mingxiu East Road, Nanning 530001, China.

出版信息

Sensors (Basel). 2023 Mar 2;23(5):2763. doi: 10.3390/s23052763.

Abstract

The signal measured by the maglev gyro sensor is sensitive to the influence of the instantaneous disturbance torque caused by the instantaneous strong wind or the ground vibration, which reduced the north-seeking accuracy of the instrument. To address this issue, we proposed a novel method combining the heuristic segmentation algorithm (HSA) and the two-sample Kolmogorov-Smirnov (KS) test (named HSA-KS method) to process the gyro signals and improve the north-seeking accuracy of the gyro. There were two key steps in the HSA-KS method: (i) all the potential change points were automatically and accurately detected by HSA, and (ii) the jumps in the signal caused by the instantaneous disturbance torque were quickly located and eliminated by the two-sample KS test. The effectiveness of our method was verified through a field experiment on a high-precision global positioning system (GPS) baseline at the 5th sub-tunnel of the Qinling water conveyance tunnel of the Hanjiang-to-Weihe River Diversion Project in Shaanxi Province, China. Our results from the autocorrelograms indicated that the jumps in the gyro signals can be automatically and accurately eliminated by the HSA-KS method. After processing, the absolute difference between the gyro and high-precision GPS north azimuths was enhanced by 53.5%, which was superior to the optimized wavelet transform and the optimized Hilbert-Huang transform.

摘要

磁悬浮陀螺传感器测量的信号对瞬时强风或地面振动引起的瞬时干扰力矩的影响很敏感,这降低了仪器的寻北精度。针对这个问题,我们提出了一种新的方法,将启发式分割算法(HSA)和双样本 Kolmogorov-Smirnov(KS)检验(命名为 HSA-KS 方法)相结合,处理陀螺信号,提高陀螺的寻北精度。HSA-KS 方法有两个关键步骤:(i)通过 HSA 自动且准确地检测所有潜在的变化点,(ii)通过双样本 KS 检验快速定位并消除由瞬时干扰力矩引起的信号跳变。我们的方法通过在中国陕西省引汉济渭工程秦岭输水隧洞 5 号支洞高精度全球定位系统(GPS)基线上的野外实验得到了验证。我们的自相关图结果表明,HSA-KS 方法可以自动且准确地消除陀螺信号中的跳变。处理后,陀螺和高精度 GPS 北向方位之间的绝对差值提高了 53.5%,优于优化的小波变换和优化的 Hilbert-Huang 变换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b70/10007503/fbf5bb946d77/sensors-23-02763-g001.jpg

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