A relative radiometric correction method for linear array push-broom imagery

Haichao Li, Hailing Song
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引用次数: 2

Abstract

The linear array CCD camera is the main sensor on the push-broom satellite. Because of the difference response among the CCD detectors, the striping noise is an obvious phenomenon in the remote sensing image along the scanning direction, which can seriously affect the image quality and quantitative application. The object of relative radiometric calibration is to eliminate them. As the state of satellite electronics varies from orbit to orbit, an automatic de-striping algorithm is needed that depends only on information that can be attained from the image data. There are many published techniques that are used to remove striping from images such as the histogram matching, histogram equalization, and Fourier transform filter methods. In order to decrease the effect we try to remove these stripes in CCD images using a relative radiometric correction algorithm based on the adaptive filtering pattern in this paper. Firstly, aiming at the characteristics of strip noise in push-broom scanner, the cause of strip noise formation is described. The suitable 1-D nonlinear filter is chosen to remove the obvious stripping based on the stripping distribution. Then, 1-D smoothing filtering is used to calculate the gain and offset coefficients. At last, the thin stripping is de-striped with the obtained coefficients. The final results indicate that the proposed method can effectively remove the stripping noise along the scanning direction effectively. Comparison of mean value and standard deviations obtained from the strip noise removed image by the proposed method and histogram equalization method suggested that the proposed method is evidently superior to the traditional histogram equalization method in preserving the image detail very well. The result of this study is applicable in striping removal of push-broom satellite's remote sensing data.
一种线阵推扫成像的相对辐射校正方法
线阵CCD相机是推扫帚卫星上的主要传感器。由于CCD探测器之间的响应差异,在遥感图像中沿扫描方向存在明显的条纹噪声现象,严重影响图像质量和定量应用。相对辐射定标的目的是消除它们。由于卫星电子设备的状态随轨道的变化而变化,因此需要一种仅依赖于从图像数据中获得的信息的自动去条带算法。有许多已发表的技术用于从图像中去除条纹,如直方图匹配,直方图均衡化和傅立叶变换滤波方法。为了降低这种影响,本文尝试采用一种基于自适应滤波模式的相对辐射校正算法去除CCD图像中的条纹。首先,针对推扫扫描仪中条形噪声的特点,分析了条形噪声的形成原因。根据剥离分布选择合适的一维非线性滤波器去除明显的剥离。然后,利用一维平滑滤波计算增益系数和偏移系数。最后,利用得到的系数对薄条纹进行去条纹处理。结果表明,该方法能有效去除扫描方向上的剥离噪声。将该方法与直方图均衡化方法去除条带噪声后得到的图像均值和标准差进行比较,结果表明,该方法在保留图像细节方面明显优于传统直方图均衡化方法。研究结果适用于推扫帚卫星遥感数据的条带去除。
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