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MIRAGE: Calibration Radiometry System

机译:影像:校准辐射测量系统

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摘要

The advent of high resolution infrared resistor arrays, has greatly increased the level of fidelity of infrared sensor testing that can be accomplished in the cost effective laboratory environment. However, the sensor output image quality depends on the uniformity of the projector array. In addition to the advanced proprietary design and fabrication process used to create a highly uniformity of the projector array. In addition to the advanced proprietary design and fabrication process used to create a highly uniform emitter array, Santa Barbara Infrared, Inc. (SBIR) applies a high speed correction algorithm to the incoming data stream that improves the uniformity of the final infrared image. The key to this algorithm is a set of calibrated tables that are measured for each emitter element in the array. SBIR has developed a Calibration Radiometry Systems (CRS) which is used to quickly perform these high precision measurements for each emitter element. This paper looks at the CRS system, reviews the algorithms used for aplying the correction and for making the calibration measurements. It concludes with some initial results showing the effect of the calibration tables derived using the CRS.
机译:高分辨率红外电阻器阵列的出现极大地提高了红外传感器测试的保真度,可以在经济高效的实验室环境中完成该测试。但是,传感器输出图像质量取决于投影仪阵列的均匀性。除了用于创建投影仪阵列的高度均匀性的高级专有设计和制造工艺外。除了用于创建高度均匀的发射器阵列的高级专有设计和制造工艺之外,Santa Barbara Infrared,Inc.(SBIR)还对输入的数据流应用了高速校正算法,从而改善了最终红外图像的均匀性。该算法的关键是针对阵列中每个发射器元件测量的一组校准表。 SBIR开发了校准辐射测量系统(CRS),可用于对每个发射器元件快速执行这些高精度测量。本文着眼于CRS系统,回顾了用于进行校正和进行校准测量的算法。最后以一些初始结果结束,这些结果显示了使用CRS导出的校准表的效果。

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