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用于三维超宽带乳腺肿瘤成像的最佳天线系统
引用本文:肖夏,王梁,徐立. 用于三维超宽带乳腺肿瘤成像的最佳天线系统[J]. 天津大学学报(自然科学与工程技术版), 2013, 0(7): 579-584
作者姓名:肖夏  王梁  徐立
作者单位:天津大学电子信息工程学院
基金项目:国家自然科学基金资助项目(61271323);毫米波国家重点实验室重点开放基金资助项目(K200913)
摘    要:在超宽带(UWB)乳腺肿瘤检测系统中,采用Debye-Z.雏色散模型对乳房建模可以很好地近似人体组织的电导率及介电常数通过在乳腺模型中分别加入3个不同频带的超宽带天线阵列,带宽涵盖4~12GHz,采用共焦成像算法和波束形成算法对使用不同天线的色散模型进行成像对比,确定出最优性能的天线.2种成像算法均能准确获得肿瘤位置图像,使用频带为4.0~7.5GHz的天线对色散模型进行波束形成成像时,成像图分辨率较高,干扰抑制最好,可以清晰地分辨距离肋骨层仅10mm、直径为5mm的肿瘤.

关 键 词:超宽带乳腺肿瘤检测  色散模型  天线阵列  共焦成像  波束形成成像

Optimum Antenna Array System Used for 3D UWB Breast Cancer Imaging
Xiao Xia,Wang Liang,Xu Li. Optimum Antenna Array System Used for 3D UWB Breast Cancer Imaging[J]. Journal of Tianjin University(Science and Technology), 2013, 0(7): 579-584
Authors:Xiao Xia  Wang Liang  Xu Li
Affiliation:(School of Electronic and Information Engineering,Tianjin University,Tianjin 300072,China)
Abstract:Three-dimensional Debye dispersion model of ultra-wide bandwidth (UWB)breast cancer detection system can better approximate to the conductivity and permittivity of human tissues. An optimum antenna was determined by applying confocal imaging and beamforming imaging to dispersion model with three antenna arrays of different fre- quency band, whose bandwidths range from 4 GHz to 12 GHz. Both imaging algorithms can achieve the accurate tumor position in images. However, a resultant image of beamforming using an antenna with the bandwidth of 4.0-- 7.5 GHz in dispersion model clearly shows a tumor, resolution ratio and interference rejection. 5 mm in diameter and 10 mm from the rib, with preferable
Keywords:ultra-wide bandwidth (UWB) breast cancer detection  dispersion model  antenna array  confocal imag- ing  beamforming imaging
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