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Focal plane imaging systems for millimeter wavelengths

机译:毫米波长的焦平面成像系统

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摘要

The authors discuss critical aspects of imaging system design and describe several different imaging systems employing focal plane array receivers operating in the 3-mm-2-mm wavelength range. Recent progress in millimeter-wavelength optics, antennas, receivers and other components permits greatly enhanced system performance in a wide range of applications. A radiometric camera for all-weather autonomous aircraft landing capability and a high sensitivity cryogenically cooled array for use in radio astronomical spectroscopy are presented. A near-focus system for identification of plastic materials concealed underneath clothing employs a two element lens, and has been demonstrated in active (transmitting) and passive (radiometric) modes. A dual-mode imaging system for plasma diagnostics utilizes both active and passive modes at its approximately=140-GHz operating frequency to study small-scale structure. The radiometric imaging systems employ between 15 and 256 Schottky barrier diode mixers, while the imaging receivers for the active systems include 64-element video detector arrays.
机译:作者讨论了成像系统设计的关键方面,并描述了几种采用在3mm-2-mm波长范围内工作的焦平面阵列接收器的不同成像系统。毫米波长光学器件,天线,接收器和其他组件的最新进展使得在广泛应用中的系统性能大大提高。提出了一种用于全天候自主飞机着陆能力的辐射照相机和用于射电天文光谱学的高灵敏度低温冷却阵列。用于识别隐藏在衣服下面的塑料材料的近焦点系统采用了两片式透镜,并且已经在主动(透射)和被动(辐射)模式下得到了证明。用于等离子体诊断的双模成像系统在其大约= 140 GHz的工作频率下利用主动和被动模式来研究小型结构。辐射成像系统采用15至256个肖特基势垒二极管混频器,而有源系统的成像接收器包括64个元素的视频检测器阵列。

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