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Detector-based absolute radiometric calibration of lamps and reflectance panels

机译:基于探测器的灯具和反射面板的绝对辐射定标

摘要

The absolute calibration of remote sensing systems is based upon radiometric standards. The irradiance standards are currently 1000-watt quartz tungsten-halogen lamps that are traced to National Institute of Standards and Technology standards by a middle party at a significant cost. Lamp instability, short lifetime and calibration inaccuracy present problems. A detector-based absolute calibration technique is described here to replace the lamp calibration in the visible portion of the spectrum (approximately 400 to 700 nm). The system utilizes a quantum efficient QED-200 trap detector in an automated facility to absolutely characterize lamp spectral irradiances or reflectance panel spectral radiances. The measured irradiance of a directly-viewed standard lamp compared favorably (within 0.8%) to the original calibration. Standard-reflectance-panel radiance measurements could not be accurately compared (within 5%) to the illuminating standard lamp irradiance because of excessive stray light in the calibration facility.
机译:遥感系统的绝对校准基于辐射标准。目前,辐照度标准是1000瓦石英钨丝卤素灯,中间商以高昂的成本追索到美国国家标准技术研究院的标准。灯泡不稳定,使用寿命短和校准不准确会带来问题。本文介绍了一种基于检测器的绝对校准技术,以代替光谱可见部分(约400至700 nm)的灯校准。该系统在自动化设施中利用量子有效的QED-200陷阱检测器来绝对表征灯的光谱辐照度或反射率面板光谱辐照度。直视标准灯的测得辐照度与原始校准值相差无几(在0.8%之内)。由于校准设备中的杂散光过多,因此无法将标准反射板的辐射度测量值准确地与照明标准灯的辐照度进行比较(在5%以内)。

著录项

  • 作者

    Penny Iain Reynold 1966-;

  • 作者单位
  • 年度 1991
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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