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MMW/THz imaging using upconversion to visible, based on glow discharge detector array and CCD camera

机译:基于辉光放电检测器阵列和CCD摄像机的MMW / THz成像,使用上转换为可见光

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摘要

An inexpensive upconverting MMW/THz imaging method is suggested here. The method is based on glow discharge detector (GDD) and silicon photodiode or simple CCD/CMOS camera. The GDD was previously found to be an excellent room-temperature MMW radiation detector by measuring its electrical current. The GDD is very inexpensive and it is advantageous due to its wide dynamic range, broad spectral range, room temperature operation, immunity to high power radiation, and more. An upconversion method is demonstrated here, which is based on measuring the visual light emitting from the GDD rather than its electrical current. The experimental setup simulates a setup that composed of a GDD array, MMW source, and a basic CCD/CMOS camera. The visual light emitting from the GDD array is directed to the CCD/CMOS camera and the change in the GDD light is measured using image processing algorithms. The combination of CMOS camera and GDD focal plane arrays can yield a faster, more sensitive, and very inexpensive MMW/THz camera, eliminating the complexity of the electronic circuits and the internal electronic noise of the GDD. Furthermore, three dimensional imaging systems based on scanning prohibited real time operation of such imaging systems. This is easily solved and is economically feasible using a GDD array. This array will enable us to acquire information on distance and magnitude from all the GDD pixels in the array simultaneously. The 3D image can be obtained using methods like frequency modulation continuous wave (FMCW) direct chirp modulation, and measuring the time of flight (TOF).
机译:在此建议一种廉价的上变频MMW / THz成像方法。该方法基于辉光放电检测器(GDD)和硅光电二极管或简单的CCD / CMOS相机。通过测量GDD的电流,以前发现它是出色的室温MMW辐射探测器。 GDD非常便宜,并且由于其宽动态范围,宽光谱范围,室温操作,抗高功率辐射等优点而具有优势。在此演示一种上转换方法,该方法基于测量从GDD发出的可见光而不是其电流。实验设置模拟由GDD阵列,MMW源和基本CCD / CMOS相机组成的设置。从GDD阵列发出的可见光被导向CCD / CMOS相机,并使用图像处理算法测量GDD光的变化。 CMOS摄像头和GDD焦平面阵列的组合可以产生更快,更灵敏且非常便宜的MMW / THz摄像头,从而消除了电子电路的复杂性和GDD的内部电子噪声。此外,基于扫描的三维成像系统禁止这种成像系统的实时操作。这很容易解决,并且使用GDD阵列在经济上是可行的。该阵列将使我们能够同时获取阵列中所有GDD像素的距离和大小信息。可以使用诸如调频连续波(FMCW)直接chi调制以及测量飞行时间(TOF)之类的方法获得3D图像。

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  • 会议地点 Warsaw(PL)
  • 作者单位

    department of Electrical and Electronic Engineering, Ariel University, Israel,Department of Electrical and Computer Engineering, Ben-Gurion University of the Negev, Beer Sheva, Israel;

    department of Electrical and Electronic Engineering, Ariel University, Israel;

    department of Electrical and Electronic Engineering, Ariel University, Israel;

    department of Electro-Optical Engineering, Ben-Gurion University of the Negev, Beer Sheva, Israel;

    Department of Electrical and Computer Engineering, Ben-Gurion University of the Negev, Beer Sheva, Israel,department of Electro-Optical Engineering, Ben-Gurion University of the Negev, Beer Sheva, Israel;

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  • 正文语种 eng
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  • 入库时间 2022-08-26 14:31:05

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