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Journal of ZheJIang University(Science Edition)
    
Design of quasi-optical system for near-field passive millimeter wave imaging
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Abstract  

The English abstract. Near-field passive millimeter wave imaging is one of the most promising technology for the safety inspection of concealed weapons. A quasi-optical system of near-field millimeter wave imaging is designed based on geometrical optics and Gaussian beam method. The system uses a pair of planar mirrors to scan the target plane along vertical and horizontal directions, respectively. A double refraction lens is used to realize focus imaging of millimeter wave. The bolometer working at 3 mm wavelength is used as a detector to receive millimeter wave radiations. The distance between the target plane and the system is less than 1.5 m, the imaging area is 1.2 m×0.6 m and the spatial resolution is 30 mm. The theoretical analysis and simulation results prove that the system has good imaging quality and meets the design index. The system can be applied to the public inspection fields and realize non-contact safety inspection, which will adapt to the development of near-field passive millimeter wave imaging system with light weight, compact volume and high imaging quality.



Key wordsgeometrical optics      Gaussian beam      quasi-optical system      millimeter imaging     
Cite this article:

. Design of quasi-optical system for near-field passive millimeter wave imaging. Journal of ZheJIang University(Science Edition), 0, (): 1-.

URL:

http://www.zjujournals.com/xueshu/sci/     OR     http://www.zjujournals.com/xueshu/sci/Y0/V/I/1


近场被动式毫米波成像准光路系统设计

近场被动式毫米波成像是最有前景的一种针对人员藏匿武器的安全检查技术。将几何光学法和高斯波束法结合设计近场被动式毫米波成像的准光路系统。该系统采用一对平面反射镜分别对目标平面竖直方向和水平方向进行一维扫描,一块双折射面透镜对毫米波波束聚焦成像,工作波长为的辐射计作为探测器接收毫米波辐射信号。最终实现与距离目标平面距离小于、成像面积为、空间分辨率为的准光路系统。理论分析和仿真结果证实该系统具有良好的成像质量,满足设计指标。该系统可应用于各公共检查场所,实现非接触式安全检查,适应于近场被动式毫米波成像重量较轻、结构紧凑、成像质量高的发展方向。

关键词: 几何光学,  高斯波束,  准光路系统,  毫米波成像,  几何光学,  高斯波束,  准光路系统,  毫米波成像 
[1] RAO Lei, ZHENG Jian, LI Zhihao. Design of quasi-optical system for near-field passive millimeter wave imaging[J]. Journal of ZheJIang University(Science Edition), 2016, 43(3): 310-315.