Pyxis手持式偏振成像仪

D. Chenault, J. Pezzaniti, Justin P. Vaden
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引用次数: 4

摘要

测量红外偏振特征的仪器在过去十年中取得了重大进展。以前的工作已经证明了偏振成像在各种目标检测场景中的价值,包括对杂波中的人造目标的检测以及对地面和海上目标的检测,而最近的工作表明了飞机检测和生物识别标记的对比度的改进。这些数据收集活动通常使用实验室或原型系统,限制目标运动或传感器平台的允许量,并且通常需要附加计算机进行数据采集和处理。尽管如此,性能和灵敏度一直在稳步提高,而尺寸、重量和功率要求也在不断降低,使偏振成像能够在更大的或现实世界的应用中得到应用。在本文中,我们描述了Pyxis®,一种基于微辐射热计的成像偏振计,可产生传统,偏振和融合图像产品的实时偏振视频。集成在光学系统中的偏振微网阵列可同时捕获所有偏振状态,使系统不受传感器或场景运动伪影的影响。该系统由电池供电,坚固耐用,重量约为四分之一磅,可以安装在头盔上或手持。偏振和融合图像产品的机载处理使操作员能够实时看到偏振特征。模拟和数字输出都可以通过平板电脑界面进行传感器控制。给出Pyxis®的顶级描述,然后是性能特征和代表性数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pyxis handheld polarimetric imager
The instrumentation for measuring infrared polarization signatures has seen significant advancement over the last decade. Previous work has shown the value of polarimetric imagery for a variety of target detection scenarios including detection of manmade targets in clutter and detection of ground and maritime targets while recent work has shown improvements in contrast for aircraft detection and biometric markers. These data collection activities have generally used laboratory or prototype systems with limitations on the allowable amount of target motion or the sensor platform and usually require an attached computer for data acquisition and processing. Still, performance and sensitivity have been steadily getting better while size, weight, and power requirements have been getting smaller enabling polarimetric imaging for a greater or real world applications. In this paper, we describe Pyxis®, a microbolometer based imaging polarimeter that produces live polarimetric video of conventional, polarimetric, and fused image products. A polarization microgrid array integrated in the optical system captures all polarization states simultaneously and makes the system immune to motion artifacts of either the sensor or the scene. The system is battery operated, rugged, and weighs about a quarter pound, and can be helmet mounted or handheld. On board processing of polarization and fused image products enable the operator to see polarimetric signatures in real time. Both analog and digital outputs are possible with sensor control available through a tablet interface. A top level description of Pyxis® is given followed by performance characteristics and representative data.
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