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Absolute calibration of the Landsat Thematic Mapper using the Internal Calibrator

机译:使用内部校准器的Landsat主题映射器的绝对校准

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In order to assess the accuracy and usefulness of the Internal Calibrator of the Landsat 4 and 5 Thematic Mappers and characterize the radiometric calibration of the instruments themselves, several hundred scenes were extracted from the Landsat TM archive at the EROS Data Center, Sioux Falls, South Dakota. These scenes formed the basis of the TM Calibration Archive System and have been used to characterize the instruments at several different time scales. From analysis of these data, well-known instrument artifacts have been accurately characterized and new anomalies have been discovered. Only results from the reflective bands are presented. At the end of each scan of the TM, a shutter passes in front of the focal planes removing all radiant energy from the detectors as well as exposing the detectors to radiance from the calibration lamps for a short period of time. From this information, estimates of detector gain and bias can be determined. However, the data recorded by the detectors is corrupted by instrument artifacts that must be removed to optimize accuracy. The most significant artifacts are Scan Correlated Shift (SCS), Memory Effect (ME), and Coherent Noise (CN). Once these artifacts have been removed from the calibration file, it can be processed to determine pulse stability parameters, integrated pulse values, and bias. As a final step, temperature-related variability can be compensated by normalizing all detector pulse measurements to a constant temperature. Except where otherwise noted, the data presented follow these processing steps. For each scene processed, integrated pulse values were calculated on a scan-by-scan basis for each detector. These values were then avenged together to obtain one data point for the entire scene.
机译:为了评估陆地卫星4和5个专题映射器的内部校准的准确性和实用性,并表征仪器本身的辐射定标,几百场面被从陆地卫星TM归档在EROS数据中心,苏瀑布,南提取达科他州。这些场景形成的TM校准归档系统的基础,并已用于在几个不同的时间尺度表征仪器。从这些数据的分析,公知的仪器文物已经准确地表征和新的异常被发现。从反光带,只有结果。在TM中的每个扫描结束,快门通过在焦平面从检测器中除去所有辐射能以及暴露所述检测器辐射来自校准灯用于短时间内的前面。从这些信息中,检测器增益和偏置的估计可以决定的。但是,由检测器所记录的数据是由必须被去除,以优化的精度仪器工件损坏。最显著伪影扫描相关移位(SCS),记忆效应(ME),和相干噪声(CN)。一旦这些工件已从校准文件中删除,它可以被处理以确定脉冲参数稳定性,积分的脉冲值,和偏置。作为最后的步骤,与温度有关的变化性可以通过归一化所有的检测器脉冲测量以恒定的温度进行补偿。除非另有说明,数据呈现请按照下列处理步骤。对于每个场景进行处理,计算出各检测器的扫描通过扫描基础上集成脉冲值。然后将这些值报复在一起以获得整个场景中的一个数据点。

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