DocumentCode
1760151
Title
Relativistic FDTD Analysis of Far-Field Scattering of a High-Speed Moving Object
Author
Lei Kuang ; Feng Xu ; Shouzheng Zhu ; Jianjun Gao ; Zhengqi Zheng
Author_Institution
Sch. of Inf. Sci. & Technol., East China Normal Univ., Shanghai, China
Volume
14
fYear
2015
fDate
2015
Firstpage
879
Lastpage
882
Abstract
Far-field scatterings of uniformly moving conducting and dielectric objects are analyzed in this letter. Using the Lorentz transformation, the scattering problem of a high-speed moving object in the laboratory frame, which is stationary with respect to the free space, is transformed to that of a motionless object in the rest frame that moves with the moving object. Then the near-zone scattered fields are solved by the Finite Difference Time Domain (FDTD) algorithm. Applying near-to-far field transformation, far-zone scattered fields are acquired in the rest frame. Subsequently, the scattered fields are transformed back to the laboratory frame. Our approach is validated against previously published results for the case of a uniformly moving two-dimensional object. Numerical examples show that the effects of the motion on the bistatic radar cross sections (RCS) and Doppler are non-negligible for high-speed objects.
Keywords
Doppler radar; Lorentz transformation; electromagnetic wave scattering; finite difference time-domain analysis; object tracking; radar cross-sections; radar tracking; Doppler radar; Lorentz transformation; bistatic RCS; bistatic radar cross section; far-field scattering; finite difference time domain; free space; motionless object; near zone scattered field; near-to-far field transformation; relativistic FDTD analysis; uniformly moving conducting object; uniformly moving dielectric object; Doppler effect; Electromagnetic scattering; Finite difference methods; Laboratories; Time-domain analysis; Vectors; Electromagnetic scattering; FDTD algorithm; lorentz transformation; moving object;
fLanguage
English
Journal_Title
Antennas and Wireless Propagation Letters, IEEE
Publisher
ieee
ISSN
1536-1225
Type
jour
DOI
10.1109/LAWP.2014.2382667
Filename
6987254
Link To Document