首页> 外文会议>Conference on Chemical and Biological sensing Ⅱ Apr 16-17, 2001, Orlando, USA >Enhanced sensitivity for hyperspectral infrared chemical detection
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Enhanced sensitivity for hyperspectral infrared chemical detection

机译:增强了高光谱红外化学检测的灵敏度

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The sensitivity of imaging, hyperspectral, passive remote sensors in the long-wavelength infrared (LWIR) spectral region is currently limited by the ability to achieve an accurate, time-invariant, pixel-to-pixel calibration of the elements composing the Focal Plane Array (FPA). Pursuing conventional techniques to improve the accuracy of the calibration will always be limited by the trade-off between the time required to collect calibration data of improved precision and the drift in the pixel response that occurs on a timescale comparable to the calibration time. This paper will present the results from a study of a method to circumvent these problems. Improvements in detection capability can be realized by applying a quick, repetitive dither of the field of view (FOV) of the imager (by a small angular amount), so that radiance/spectral differences between individual target areas can be measured by a single FPA pixel. By performing this difference measurement repetitively both residual differences in the pixel-to-pixel calibration and 1/f detector drift noise can effectively be eliminated. In addition, variations in the atmosphere and target scene caused by the motion of the sensor platform will cause signal drifts that this technique would be able to remove. This method allows improvements in sensitivity that could potentially scale as the square root of the observation time.
机译:目前,长焦红外(LWIR)光谱区域中的成像,高光谱,无源远程传感器的灵敏度受到对构成焦平面阵列的元素进行精确,时不变的像素到像素校准的能力的限制(FPA)。追求提高校准精度的常规技术将始终受到在收集精度提高的校准数据所需的时间与在与校准时间相当的时间范围内发生的像素响应漂移之间的权衡的限制。本文将介绍通过研究方法来解决这些问题的结果。可以通过应用快速重复的成像器视场(FOV)抖动(小角度量)来实现检测能力的提高,从而可以通过单个FPA测量各个目标区域之间的辐射/光谱差异像素。通过重复执行该差异测量,可以有效消除像素间校准中的残留差异和1 / f检测器漂移噪声。另外,由传感器平台的运动引起的大气和目标场景的变化将导致该技术能够消除的信号漂移。这种方法可以提高灵敏度,而灵敏度有可能随观察时间的平方根成比例增加。

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