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基于小波变换的探地雷达目标成像廓线获取
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作者 姚萌 王华斌 《仪器仪表学报》 EI CAS CSCD 北大核心 2003年第z2期76-79,共4页
提出了一种基于小波变换的调频连续波方式探地雷达目标成像数据分析方法。并从理论上探讨了小波变换在调频连续波探地雷达回波信号的零差频瞬态特征分析的可行性,运用小波变换算法中的品质因素的恒定性,选择恰当的算法和适当的小波基,... 提出了一种基于小波变换的调频连续波方式探地雷达目标成像数据分析方法。并从理论上探讨了小波变换在调频连续波探地雷达回波信号的零差频瞬态特征分析的可行性,运用小波变换算法中的品质因素的恒定性,选择恰当的算法和适当的小波基,提高了回波信号时差分析检测的精度和目标成像边界。经计算机仿真取得较好的结果。 展开更多
关键词 地面穿透雷达 小波变换 回波信号时差检测
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An element-free Galerkin method for ground penetrating radar numerical simulation 被引量:2
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作者 冯德山 郭荣文 王洪华 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期261-269,共9页
An element-free Galerkin method(EFGM) is used to solve the two-dimensional(2D) ground penetrating radar(GPR)modelling problems, due to its simple pre-processing, the absence of elements and high accuracy. Different fr... An element-free Galerkin method(EFGM) is used to solve the two-dimensional(2D) ground penetrating radar(GPR)modelling problems, due to its simple pre-processing, the absence of elements and high accuracy. Different from element-based numerical methods, this approach makes nodes free from the elemental restraint and avoids the explicit mesh discretization. First, we derived the boundary value problem for the 2D GPR simulation problems. Second, a penalty function approach and a boundary condition truncated method were used to enforce the essential and the absorbing boundary conditions, respectively. A three-layered GPR model was used to verify our element-free approach. The numerical solutions show that our solutions have an excellent agreement with solutions of a finite element method(FEM). Then, we used the EFGM to simulate one more complex model to show its capability and limitations. Simulation results show that one obvious advantage of EFGM is the absence of element mesh, which makes the method very flexible. Due to the use of MLS fitting, a key feature of EFM, is that both the dependent variable and its gradient are continuous and have high precision. 展开更多
关键词 element-free Galerkin method moving least-squares method ground penetrating radar forward simulation
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