Research on multibeam line layout based on geometric mathematical model and regression analysis

Authors

  • Kaijie Hu
  • Pengfei Xu
  • Yijie Zhang
  • Xudong Li

DOI:

https://doi.org/10.54097/64bsp314

Keywords:

geometric-mathematical model, loop traversal, projection, regression analysis.

Abstract

A multibeam sounding system is a system that emits acoustic pulse waves through a mechanical device to map the seafloor topography in real time. It can accurately and rapidly measure the size, shape and elevation changes of underwater targets. In this study, the mathematical model of the multibeam sounding system is proposed, and the optimized design of the survey line is carried out according to different seabed geomorphology. Firstly, relevant formulas are deduced by mathematical geometry and trigonometric functions in plane space, then a spatial right-angled coordinate system is established and the direction of the survey line is projected to the x-axis, which transforms the survey line problem in three-dimensional space into a planar type, and finally, according to the mathematical definitions, the shape of the multibeam irradiation on the sloping surface is judged to be an ellipse and the projection model is constructed. The bivariate model is constructed using regression analysis, and the line measurement that meets the requirements is determined by solving the optimal solution. The conclusion shows that the optimal solution for the angle between the direction of the survey line and the projection of the normal direction of the seabed slope on the horizontal plane is 45°, and the survey line that meets the requirements of the shortest measurement length, covering the entire sea area to be surveyed, and the overlap rate of 10-20% can be obtained.

Downloads

Download data is not yet available.

References

FAN Shaoying, ZHANG Ran, SHI Yalong. Application of Sonic 2026 multibeam bathymetric system in Xiaolangdi Water Conservancy Hub[J]. Science and Technology Innovation and Application, 2020(7):177-178,180.

LI Tie, ZHOU Fengnian, ZHAO Jianhu. Topographic feature matching method for overall calibration of installation deviation of multibeam systems[J]. Journal of Surveying and Mapping, 2019(4):512-519.

QIN Chaojie,YAO Rui. Application of multibeam technology in underwater topographic survey in Huaihe River Basin[J]. Water Resources Informatization, 2023, 2 : 61~64.

WANG Jun-Sen, JIN Shao-Hua, BIAN Gang, et al. Residual correction of multibeam bathymetric traverse motion using overlapping regions of neighboring survey lines[J]. Journal of Marine Technology, 2023, 42(4):35~42.

Zhang Chuqi. Application of bathymetry in the north harbor of Hainan port based on multibeam bathymetry system[J] . Journal of Ezhou University, 2022, 29(5): 103~105.

Li Yuhui. Application analysis of multibeam sounder in channel mapping[J] . Jiangxi Surveying and Mapping, 2021, 130:12~14.

Fan Xiaotao, Zhang Shiming, Sun Zhenyong, Bao Bo, Li Zibin. Research on edge beam data processing method based on topographic trend surface [J/OL]. People's Yangtze River.

Liang Li , Li Qingtao , Tan Yunying , et al. Multi-parameter optimization of fuel economy of HMCVT based on parametric recurrent algorithm [J]. Journal of Agricultural Engineering, 2023, 39(10):48-55.

Yifan Wang, Zhenjiang Dong, Xiangdong Chen. Research on right-turn parking detection method for large vehicles in traffic scenarios [J/OL]. Computer Engineering and Applications.

XIN Yicheng, ZHANG Binbin, GAO Yancai, et al. Performance evaluation and application of AICD intelligent water control valve[J]. Technical Supervision of Petroleum Industry, 2023, 39(10) : 22-25.

Downloads

Published

26-01-2024

How to Cite

Hu, K., Xu, P., Zhang, Y., & Li, X. (2024). Research on multibeam line layout based on geometric mathematical model and regression analysis. Highlights in Science, Engineering and Technology, 82, 85-90. https://doi.org/10.54097/64bsp314