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A design of an on-orbit radiometric calibration device for high dynamic range infrared remote sensors

机译:高动态范围红外遥控器的轨道辐射校准装置的设计

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With the demand of quantitative remote sensing technology growing, high reliability as well as high accuracy radiometric calibration technology, especially the on-orbit radiometric calibration device has become an essential orientation in term of quantitative remote sensing technology. In recent years, global launches of remote sensing satellites are equipped with innovative on-orbit radiometric calibration devices. In order to meet the requirements of covering a very wide dynamic range and no-shielding radiometric calibration system, we designed a projection-type radiometric calibration device for high dynamic range sensors based on the Schmidt telescope system. In this internal radiometric calibration device, we select the EF-8530 light source as the calibration blackbody. EF-8530 is a high emittance Nichrome (Ni-Cr) reference source. It can operate in steady or pulsed state mode at a peak temperature of 973K. The irradiance from the source was projected to the IRFPA. The irradiance needs to ensure that the IRFPA can obtain different amplitude of the uniform irradiance through the narrow IR passbands and cover the very wide dynamic range. Combining the internal on-orbit radiometric calibration device with the specially designed adaptive radiometric calibration algorithms, an on-orbit dynamic non-uniformity correction can be accomplished without blocking the optical beam from outside the telescope. The design optimizes optics, source design, and power supply electronics for irradiance accuracy and uniformity. The internal on-orbit radiometric calibration device not only satisfies a series of indexes such as stability, accuracy, large dynamic range and uniformity of irradiance, but also has the advantages of short heating and cooling time, small volume, lightweight, low power consumption and many other features. It can realize the fast and efficient relative radiometric calibration without shielding the field of view. The device can applied to the design and manufacture of the scanning infrared imaging system, the infrared remote sensing system, the infrared early-warning satellite, and so on.
机译:随着定量遥感技术的需求,高可靠性以及高精度的辐射校准技术,特别是在轨道辐射验证装置中已成为定量遥感技术的必要方向。近年来,遥感卫星的全球推出配备了创新的轨道辐射校准装置。为了满足覆盖非常宽的动态范围和无屏蔽辐射校准系统的要求,我们设计了一种基于Schmidt望远镜系统的高动态范围传感器的投影型辐射校准装置。在该内部辐射校准装置中,我们选择EF-8530光源作为校准黑体。 EF-8530是一种高辐射率Nichrome(NI-CR)参考源。它可以在973K的峰值温度下以稳定或脉冲状态模式运行。来自源的辐照程序预计IRFPA。辐照度需要确保IRFPA通过窄的IR通带可以获得均匀辐照的不同幅度,并覆盖非常宽的动态范围。将内部轨道放射线校准装置与专门设计的自适应辐射校准算法组合,可以实现在不阻挡望远镜外部的光束的情况下实现轨道动态非均匀性校正。该设计优化了光学,源设计和供电电子产品,用于辐照度精度和均匀性。内部轨道辐射校准装置不仅满足一系列索引,如稳定性,精度,大的动态范围和辐照度均匀,而且还具有加热和冷却时间短,体积小,重量轻,功耗低的优点。许多其他功能。它可以实现快速有效的相对放射线校准,而无需屏蔽视野。该装置可以应用于扫描红外成像系统的设计和制造,红外遥感系统,红外线预警卫星等。

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