[1]
Yingli LIU. The Application and study of GPR in engineering geophysics[D]. Chengdu: Chengdu University of Technology, (2008).
Google Scholar
[2]
Zhixiong YU. Study on digital processing technology of ground penetrating radar and the application of ground penetrating radar in hydroelectric engineering [D]. Wuhan: Wuhan University, (2003).
Google Scholar
[3]
Hua DENG. The application of Mallat's Pyramid Algorithm on processing signals of GPR [D]. Zhengzhou: Zhengzhou University, (2002).
Google Scholar
[4]
Weiwei HE. Research and application of ground penetrating radar digital processing technology[D]. Guilin: Guilin University of Technology, (2006).
Google Scholar
[5]
Meili MENG. Echo simulation analysis of ground penetrating radar [D]. Zhengzhou: Zhengzhou University, (2002).
Google Scholar
[6]
Jun LIU. Two-dimensional finite difference time domain simulation and application study of ground penetrating radar electromagnetic wave [D]. Zhengzhou: Zhengzhou University, (2006).
Google Scholar
[7]
Jiantao WEI. Analysis and research of ground penetrating radar [D]. Dalian: Dalian University of Technology, (2000).
Google Scholar
[8]
Daxin LI. Methods and application of ground penetrating rader[M]. Beijing: Geology Publishing House, 1994: 56-79.
Google Scholar
[9]
Huilian WANG. Physical simulation of ground penetrating radar [J]. Earth Science, 1993, 13(3): 205-208.
Google Scholar
[10]
Xiangtang LI, Duanyi WANG, Xiaoning ZHANG. Review and prospect of ground penetrating radar [J]. Non-destructive Testing, 2006, 28(9): 479-484.
Google Scholar
[11]
Moffatt D L, Puskar R J. A subsurface electromagnetic pulse radar[J]. Geophysics, 1976, 41(3): 506-518.
DOI: 10.1190/1.1440629
Google Scholar
[12]
Chan L C, Moffatt D L, Peters L. A characterization of subsurface radar targets[J]. Proceedings of the IEEE, 1979, 67(7): 991-1000.
DOI: 10.1109/proc.1979.11380
Google Scholar
[13]
Liqiang GUO, Mingzhi LI, Debiao GE, et al. Analyzing Electromagnetic Scattering Problems Using Finite-Difference Time-Domain Algorithm[J]. Chinese Journal of Computational Physics, 1992, 9(4): 655-660.
Google Scholar
[14]
Zhenhai SHAO, Wei HONG. Several new absorbing boundary conditions and their application in three dimensional scattering problems [J]. Chinese Journal of Radio Science, 1999, 14(13): 287-294.
Google Scholar
[15]
Hongxia YE. Random rough surface and target electromagnetic scattering numerical calculation method[D]. Shanghai: Fudan University, (2007).
Google Scholar
[16]
Chao ZHOU. Study on Simulation of Scattering Problem of Underground Goal Object of Ground Penetrating Radar [D]. Chongqing: Chongqing University, (2006).
Google Scholar
[17]
Persico R. On the Role of Measurement Configuration in Contactless GPR Data Processing by Means of Linear Inverse Scattering[J]. IEEE Transactions On Antenna and Propagation, 2006, 54(7): 2062-(2071).
DOI: 10.1109/tap.2006.877170
Google Scholar
[18]
Meincke P. Efficient Calculation of Born Scattering for Fixed offset Ground Penetrating Radar Surveys[J]. IEEE Geoscience And Remote Sensing Letters, 2007, 4(1): 88-92.
DOI: 10.1109/lgrs.2006.886423
Google Scholar
[19]
Joachimowicz N, Pichot C, Hugonin J P. Inverse Scattering:An Iterative Numerical Method for Electromagnetic Imaging[J]. IEEE Transactions On antennas and propagation, 1991, 39(12): 1742-1752.
DOI: 10.1109/8.121595
Google Scholar
[20]
Tsang L, Kong A J, Ding K H. Scattering of Electromagnetic Waves Theory and Applications[M]. New York: Wiley Interscience, (2000).
Google Scholar
[21]
Rihaczek A W, Hershkowitz S J. Manmade target backscattering behavior: applicability of conventional radar resolution theory[J]. IEEE Trans: Aerospace Electron System, 32(2): 809-824.
DOI: 10.1109/7.489523
Google Scholar