首页> 外文会议>Sensor Array and Multichannel Signal Processing Workshop (SAM), 2012 IEEE 7th >3-D imaging for ground penetrating radar using compressive sensing with block-toeplitz structures
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3-D imaging for ground penetrating radar using compressive sensing with block-toeplitz structures

机译:具有块-顶点结构的压缩感测的探地雷达的3D成像

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摘要

Compressive sensing (CS) techniques have shown promise for sparse imaging applications such as ground penetrating radar (GPR). However, CS involves the enumeration of a dictionary which implies huge storage requirements when the problem is large and multidimensional. This paper shows that the underlying propagation model can have invariance properties that simplify the dictionary. Specifically, translational invariance in the GPR case leads to a block-Toeplitz structure that can be exploited to reduce both the storage, by a factor of N in each block-Toeplitz dimension, and the computational complexity. Exploiting this reduction in storage for the 3-dimensional GPR imaging problem makes the CS solution feasible for underground object detection.
机译:压缩传感(CS)技术已显示出对稀疏成像应用(如探地雷达(GPR))的希望。但是,CS涉及到字典的枚举,这在问题较大且多维时,意味着巨大的存储需求。本文表明,基础传播模型可以具有不变性,从而简化了字典。具体而言,GPR情况下的平移不变性导致了块Toeplitz结构,可利用该结构将每个块Toeplitz维度的存储量减少N倍,并降低计算复杂度。利用针对3维GPR成像问题的这种减少的存储量,使CS解决方案可用于地下物体检测。

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