Liu Jiachen, Wang Lu, Zu Yutong, Hu Yuanbiao
Faculty of Engineering Technology, China University of Geosciences (Beijing), Beijing 100083, China.
Micromachines (Basel). 2024 Sep 21;15(9):1168. doi: 10.3390/mi15091168.
The inertial measurement method of pipelines utilizes a Micro-Electro-Mechanical Systems Inertial Measurement Unit (MIMU) to get the three-dimensional trajectory of underground pipelines. The initial attitude is significant for the inertial measurement method of pipelines. The traditional method to obtain the initial attitude uses three-axis magnetometers to measure the Earth's magnetic field. However, the magnetic field in urban underground pipelines is intricate, which leads to the initial attitude being inaccurate. To overcome this challenge, a novel multi-position initial alignment method based on data backtracking for a single-axis FOG and a three-axis Micro-Electro-Mechanical Inertial Measurement Unit (MIMU) is proposed. Firstly, the configuration of the sensors is determined. Secondly, according to the three-point support structure of the pipeline measuring instrument, a three-position alignment scheme is designed. Additionally, an initial alignment algorithm using the data backtracking method is developed. In this algorithm, a rough initial alignment is conducted by the data from single-axis FOG, and a fine initial alignment is conducted by the data from FOG/MIMU. Finally, an experiment was conducted to validate this method. The experiment results indicate that the pitch and roll angle errors are less than 0.05°, and the azimuth angle errors are less than 0.2°. This improved the precision of the 3-D trajectory of underground pipelines.
管道惯性测量方法利用微机电系统惯性测量单元(MIMU)获取地下管道的三维轨迹。初始姿态对于管道惯性测量方法至关重要。传统的获取初始姿态的方法是使用三轴磁力计测量地磁场。然而,城市地下管道中的磁场错综复杂,这导致初始姿态不准确。为了克服这一挑战,提出了一种基于单轴光纤陀螺(FOG)和三轴微机电惯性测量单元(MIMU)数据回溯的新型多位置初始对准方法。首先,确定传感器的配置。其次,根据管道测量仪的三点支撑结构,设计了一种三位置对准方案。此外,开发了一种使用数据回溯方法的初始对准算法。在该算法中,通过单轴FOG的数据进行粗略初始对准,通过FOG/MIMU的数据进行精细初始对准。最后,进行了实验以验证该方法。实验结果表明,俯仰角和横滚角误差小于0.05°,方位角误差小于0.2°。这提高了地下管道三维轨迹的精度。