High-Frequency Method for Scattering from Coated Targets with Extremely Electrically Large Size in Terahertz Band

被引:3
|
作者
Hua, Hou-Qiang [1 ]
Jiang, Yue-Song [1 ]
He, Yun-Tao [1 ]
机构
[1] Beihang Univ, Sch Elect & Informat Engn, Beijing 100191, Peoples R China
基金
中国国家自然科学基金;
关键词
terahertz; radar cross-section; roughness; coating; graphical electromagnetic computing; partition display algorithm; RADAR CROSS-SECTION; RCS; GPU;
D O I
10.1080/02726343.2015.1043850
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This article presents a high-frequency method for the prediction of radar cross-section of coated targets with extremely electrically large size in the terahertz band in free space. To consider the scattering characteristics of the coated targets with a rough surface in the terahertz band, taking into account the effect of surface roughness, the reflection coefficients on the smooth coating surface can be modified; the equivalent electric and magnetic currents on the surface can then be corrected by the modified reflection coefficients to obtain the electric and magnetic induced current densities on the rough coating surface. Therefore the physical optics method, which was combined with the graphical electromagnetic computing method and improved using the partition display algorithm, can be used to solve the scattered fields, and the radar cross-section of the coated targets with a rough surface in the terahertz band can then be obtained. Numerical results for several coated targets, such as the mother warhead of the Minuteman III intercontinental ballistic missile and VFY-218 aircraft, are given and discussed. The results provide an important basis and method for applications of terahertz radar in many fields, such as military, astronomy, and remote sensing, in the future.
引用
收藏
页码:321 / 339
页数:19
相关论文
共 50 条
  • [21] Frequency characteristics of sphere-like cavities in extremely high-frequency band
    Afonin, D.G.
    Kanunov, E.R.
    Modelling, Measurement & Control A: General Physics, Electronics,Electrical Engineering, 1994, 54 (1-3): : 43 - 48
  • [22] High-frequency analysis on scattering from complex conductive targets in half space
    Li X.-F.
    Xie Y.-J.
    Chen B.-T.
    Fan J.
    Dianzi Yu Xinxi Xuebao/Journal of Electronics and Information Technology, 2010, 32 (02): : 449 - 453
  • [23] An Accelerated PO for EM Scattering from Electrically Large Targets
    Huo, Jincong
    Xu, Le
    Shi, Xiaowei
    Yang, Zhanbiao
    IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2021, 20 (12): : 2300 - 2304
  • [24] High-Frequency Analysis on RCS of Terahertz Conductive Targets in Free Space
    Hua, Houqiang
    Jiang, Yuesong
    Su, Lin
    Wen, Donghai
    Yu, Rong
    Cheng, Zhihua
    Yu, Guoxin
    INFRARED, MILLIMETER-WAVE, AND TERAHERTZ TECHNOLOGIES II, 2012, 8562
  • [25] Method for estimating mean particle size from high-frequency fluctuations in beam attenuation or scattering measurements
    Briggs, Nathan T.
    Slade, Wayne H.
    Boss, Emmanuel
    Perry, Mary Jane
    APPLIED OPTICS, 2013, 52 (27) : 6710 - 6725
  • [26] Globalized numerical modeling of electromagnetic scattering from conductive targets with open cavity and electrically large size
    Nie, ZP
    Wang, HG
    ACTA PHYSICA SINICA, 2003, 52 (12) : 3035 - 3042
  • [27] Analysis of terahertz scattering from electrically large scatterer with NURBS modeling
    Liu, Jiao
    Guo, Lixin
    JOURNAL OF ELECTROMAGNETIC WAVES AND APPLICATIONS, 2017, 31 (10) : 981 - 996
  • [28] Surface Scattering and Imaging Characteristics of Rough Targets in Terahertz Low-Frequency Band
    Chai Xinyue
    Hu Hao
    Hu Xiaoxue
    Ma Xinru
    Xi Sixing
    Wang Xiaolei
    LASER & OPTOELECTRONICS PROGRESS, 2024, 61 (10)
  • [29] FAST METHOD FOR HIGH-FREQUENCY ACOUSTIC SCATTERING FROM RANDOM SCATTERERS
    Tsuji, Paul
    Xiu, Dongbin
    Ying, Lexing
    INTERNATIONAL JOURNAL FOR UNCERTAINTY QUANTIFICATION, 2011, 1 (02) : 99 - 117
  • [30] Efficient Scattering Calculation Model for Electrically Large Targets Coated With Phase-Modulated Metasurfaces
    Jiang, Xu
    Zhang, Lamei
    Zou, Bin
    Chen, Yifan
    Miao, Wuxia
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2024, 72 (01) : 553 - 565