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Research on Geometric Calibration of Spaceborne Linear Array Whiskbroom Camera

机译:星载线阵旋转扫帚相机的几何标定研究

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摘要

The geometric calibration of a spaceborne thermal-infrared camera with a high spatial resolution and wide coverage can set benchmarks for providing an accurate geographical coordinate for the retrieval of land surface temperature. The practice of using linear array whiskbroom Charge-Coupled Device (CCD) arrays to image the Earth can help get thermal-infrared images of a large breadth with high spatial resolutions. Focusing on the whiskbroom characteristics of equal time intervals and unequal angles, the present study proposes a spaceborne linear-array-scanning imaging geometric model, whilst calibrating temporal system parameters and whiskbroom angle parameters. With the help of the YG-14—China’s first satellite equipped with thermal-infrared cameras of high spatial resolution—China’s Anyang Imaging and Taiyuan Imaging are used to conduct an experiment of geometric calibration and a verification test, respectively. Results have shown that the plane positioning accuracy without ground control points (GCPs) is better than 30 pixels and the plane positioning accuracy with GCPs is better than 1 pixel.
机译:具有高空间分辨率和广泛覆盖范围的星载热红外摄像机的几何标定可以设置基准,以提供准确的地理坐标以检索地面温度。使用线性阵列晶须扫帚电荷耦合器件(CCD)阵列对地球成像的做法可以帮助获得具有高空间分辨率的宽广范围的热红外图像。着眼于等时间间隔和不等角度的摆臂特性,本研究提出了一种星载线性阵列扫描成像几何模型,同时校准了时间系统参数和摆臂角度参数。借助YG-14(中国第一颗装有高分辨率红外热像仪的卫星)的帮助,中国的安阳成像和太原成像分别进行了几何校准和验证测试。结果表明,没有地面控制点(GCP)的平面定位精度优于30像素,具有GCP的平面定位精度优于1像素。

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