首页> 外文会议>Geoscience and Remote Sensing Symposium, 1994. IGARSS '94. Surface and Atmospheric Remote Sensing: Technologies, Data Analysis and Interpretation., International >End-to-end spectral response characterization of the Clouds and the Earth's Radiant Energy System sensors from 0.3 to 200 microns
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End-to-end spectral response characterization of the Clouds and the Earth's Radiant Energy System sensors from 0.3 to 200 microns

机译:从0.3到200微米的云和地球辐射能系统传感器的端到端光谱响应特性

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The Clouds and the Earth's Radiant Energy System (CERES) instruments each contain three spectrally broadband scanning sensors operating in the bands from 0.3 to 5 /spl mu/m, 8 to 12 /spl mu/m and 0.3 to <150 /spl mu/m. The broad spectral response of the third band is limited only by the reflectance of two protected silver coated mirrors and the response of a thermistor bolometer detector. The end-to-end relative spectral response of this sensor over the entire spectral range must be accurately measured to permit longwave radiometric calibration with a blackbody radiance standard. This spectral response is measured with a Fourier transform spectrometer (FTS) as a source for a vacuum chamber facility which operates over the entire spectral range from 0.3 to 200 /spl mu/m. The FTS is capable of operating in a step scan mode so that the dwell at each point in the interferogram is long enough for the CERES sensor to respond at a time constant of 8 milliseconds. The sensor's relative spectral response is referenced to a windowless, uncoated pyroelectric trap detector consisting of two specular detectors in a wedge configuration. This wedge produces a total of 10 reflections of input radiant power from the two detector surfaces. The resulting spectral absorptance of the reference detector is flat and or well characterized over most of the spectral range from 0.3 to 200 /spl mu/m. The facility and reference detector designs and spectral measurement techniques are described. Measurements made to validate the pyroelectric reference detector performance are presented.
机译:云和地球的辐射能系统(CERES)各自包含三个光谱宽带扫描传感器,它们在0.3至5 / spl mu / m,8至12 / spl mu / m和0.3至<150 / spl mu /米第三波段的宽光谱响应仅受两个受保护的镀银镜的反射率和热敏电阻测辐射热计检测器的响应限制。必须准确测量此传感器在整个光谱范围内的端到端相对光谱响应,以允许使用黑体辐射标准进行长波辐射度校准。该光谱响应是使用傅立叶变换光谱仪(FTS)作为真空室设备的源进行测量的,该真空室设备在0.3到200 / spl mu / m的整个光谱范围内运行。 FTS能够以步进扫描模式进行操作,因此干涉图中每个点的停留时间足够长,以使CERES传感器能够以8毫秒的时间常数做出响应。传感器的相对光谱响应以无窗,未镀膜的热电陷阱检测器为参考,该检测器由两个楔形配置的镜面检测器组成。该楔形从两个检测器表面产生总共10次输入辐射功率的反射。参考检测器的光谱吸收率是平坦的,或者在0.3至200 / spl mu / m的大部分光谱范围内具有良好的特性。描述了设施和参考探测器的设计以及光谱测量技术。介绍了为验证热释电参考检测器性能而进行的测量。

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