A novel 3D target location method using 2D orthonormal basis functions of total vertical gradient of magnetic anomaly

被引:0
作者
Wang, Yong
Chai, Jin
Wang, Han
Cao, Wenliang
Wang, Yi
Yue, Liangguang [1 ]
Zhao, Jing
机构
[1] Jilin Univ, Coll Instrumentat & Elect Engn, Changchun 130012, Peoples R China
基金
中国国家自然科学基金;
关键词
Scalar magnetic survey; Vertical gradient; Localization; Magnetic moment orientation; Orthonormal basis functions (OBFs); AUTOMATIC DETECTION; SYSTEM;
D O I
10.1016/j.measurement.2025.117457
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Magnetic anomaly detection (MAD) has been recognized as an effective method for detecting and positioning magnetic targets. To address the issue of scalar MAD being influenced by the magnetic moment orientation (MMO) and the challenge of estimating the vertical coordinates of the target, a three-dimensional (3D) target location method is developed in this article. The proposed method first employs the total vertical gradient of magnetic anomalies to characterize their spatial distribution and constructs a two-dimensional orthonormal basis functions (VG-2D-OBFs) model to represent these properties. Then, by employing a black-body model to decouple vertical and horizontal localization, this approach reduces the complexity of the solution while enhancing depth estimation accuracy. Ultimately, a 3D target localization framework is developed, utilizing a two-step strategy to enhance spatial accuracy. Simulations and field experiments demonstrate that the proposed method not only has good robustness and high positioning accuracy, but also is insensitive to the magnetic moment orientation, with the root mean square and standard deviation of the localization error for different MMOs reaching 0.149 m and 0.069 m, respectively. Therefore, as a post-processing method, it is of significant in the of detection.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Solving Monge-Ampere equation in 2D and 3D by Generalized Finite Difference Method
    Benito, J. J.
    Garcia, A.
    Gavete, L.
    Negreanu, M.
    Urena, F.
    Vargas, A. M.
    ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2021, 124 (124) : 52 - 63
  • [22] A novel Bayesian image despeckling method using 2D CGARCH-M model in 2D dost framework
    Moradi, Mohammad
    Amindavar, Hamidreza
    DIGITAL SIGNAL PROCESSING, 2023, 140
  • [23] Automatic method for segmenting leaves by combining 2D and 3D image-processing techniques
    Itakura, Kenta
    Hosoi, Fumiki
    APPLIED OPTICS, 2020, 59 (02) : 545 - 551
  • [24] Comparison of analog 2D and digital 3D preoperative templating for predicting implant size in total knee arthroplasty
    Kobayashi, Atsushi
    Ishii, Yoshinori
    Takeda, Mitsuhiro
    Noguchi, Hideo
    Higuchi, Hiroshi
    Toyabe, Sinichi
    COMPUTER AIDED SURGERY, 2012, 17 (02) : 96 - 101
  • [25] A real-time IGRT method using a Kalman filter framework to extract 3D positions from 2D projections
    Nguyen, Doan Trang
    Keall, Paul
    Booth, Jeremy
    Shieh, Chun-Chien
    Poulsen, Per
    O'Brien, Ricky
    PHYSICS IN MEDICINE AND BIOLOGY, 2021, 66 (21)
  • [26] Designing digital image encryption using 2D and 3D reversible modular chaotic maps
    Broumandnia, Ali
    JOURNAL OF INFORMATION SECURITY AND APPLICATIONS, 2019, 47 : 188 - 198
  • [27] Precise 2D and 3D Fluoroscopic Imaging by Using an FMCW Millimeter-Wave Radar
    Wang, Yaheng
    Su, Jie
    Fukuda, Taiga
    Tonouchi, Masayoshi
    Murakami, Hironaru
    IEEE ACCESS, 2023, 11 : 84027 - 84034
  • [28] Bi-sided integral imaging with 2D/3D convertibility using scattering polarizer
    Yeom, Jiwoon
    Hong, Keehoon
    Park, Soon-gi
    Hong, Jisoo
    Min, Sung-Wook
    Lee, Byoungho
    OPTICS EXPRESS, 2013, 21 (25): : 31189 - 31200
  • [29] Integral 3D/2D partially convertible display using geometric phase lens array
    Watanabe, Hayato
    Omura, Takuya
    Okaichi, Naoto
    Sasaki, Hisayuki
    Arai, Jun
    Kawakita, Masahiro
    Javidi, Bahram
    RESULTS IN OPTICS, 2021, 3
  • [30] Optical 3D shape measurement profilometry based on 2D S-Transform filtering method
    Zhong, Min
    Chen, Wenjing
    Su, Xianyu
    Zheng, Yi
    Shen, Qiuju
    OPTICS COMMUNICATIONS, 2013, 300 : 129 - 136