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Inexpensive and simple MMW imaging using optical detection of light emitted from glow discharge detectors

机译:使用从发光放电检测器发出的光检测光检测廉价且简单的MMW成像

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Millimeter waves imaging systems have many applications in medicine, communications, homeland security, and space technology. The advantages of MMW includes high penetrates thru almost every dielectric materials and no known ionization hazard for biological tissue, and low atmospheric scattering compared to infrared and optical rays. The Glow Discharge Detector (GDD) is a low cost room temperature MMW detector based on a commercial neon indicator lamp. Previously the GDD was proven to be very sensitive and inexpensive MMW radiation detector capable of direct and heterodyne radiation detection. Focal Plane Arrays (FPA) of GDD pixels were constructed and experimentally tested. In those experiments, the change in the DC bias current of the GDD was measured as function of the incidence MMW radiation. In this work the up-conversion of MMW radiation to visual light is demonstrated. By using a CCD/CMOS camera and GDD FPA a faster, more sensitive, and very inexpensive MMW and THz imaging system can be implemented. Also it is shown that by using the up converting method a real time 2D and 3D images can be obtained. 3D imaging system can provide the topography of the object plane in addition to intensity reflected from the image. Preliminary experimental results of an imaging system based on a unique quasi optical system, an 8X8 GDD's focal plane array (FPA), and a CCD camera is demonstrated. Also it is shown that the MMW images can be obtained in Real time.
机译:毫米波成像系统在医学,通信,国土安全和空间技术中具有许多应用。 MMW的优点包括高渗透到几乎每种介电材料,没有用于生物组织的已知电离危险,与红外线和光学光线相比,低大气散射。辉光放电检测器(GDD)是基于商业霓虹灯指示灯的低成本室温MMW检测器。以前,GDD被证明是非常敏感和廉价的MMW辐射检测器,其能够直接和外差辐射检测。构建和实验测试GDD像素的焦平面阵列(FPA)。在那些实验中,作为入射MMW辐射的功能测量GDD的DC偏置电流的变化。在这项工作中,证明了MMW辐射对视灯的上转换。通过使用CCD / CMOS相机和GDD FPA更快,更敏感,并且可以实现非常昂贵的MMW和THz成像系统。而且表明,通过使用UP转换方法,可以获得实时2D和3D图像。除了从图像反射的强度之外,3D成像系统还可以提供物体平面的形貌。证明了基于独特的准光学系统的成像系统的初步实验结果,证明了8×8GDD的焦平面阵列(FPA)和CCD相机。而且结果表明,可以实时获得MMW图像。

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