Terra MODIS第5波段红外遥感影像条带噪声的探测与校正  被引量:4

Terra MODIS band 5th stripe noise detection and correction using MAP-based algorithm

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作  者:王荣彬[1,2] 曾超[1] 姜湾[3] 李平湘[1] 

机构地区:[1]武汉大学测绘遥感信息工程国家重点实验室,湖北武汉430079 [2]中国土地勘测规划院,北京100035 [3]武汉大学资源与环境科学学院,湖北武汉430079

出  处:《红外与激光工程》2013年第1期273-277,共5页Infrared and Laser Engineering

基  金:973项目对地观测传感网一体化数据融合与同化方法(2011CB707103)

摘  要:由于TerraMODIS传感器第5波段(1.230~1.250I,zm)中部分探测元件出现故障,从而导致整幅影像上存在明显的条带噪声。对于地理校正后的MODIS影像数据,其条带噪声的分布并不是完全规则的,还可能存在不连续的现象,加大了对噪声进行处理的难度。提出一种对条带噪声进行检测与去除的方法,首先利用局部梯度对条带噪声的位置进行探测。然后在基于最大后验概率的框架下结合噪声模型与Huber—Markov先验,并通过梯度下降算法进行噪声的去除。使用真实的遥感数据进行了实验,所展示的恢复后数据和对应的频谱图都证明了文中方法的有效性。Since 1 of the 20 detectors in Terra MODIS band 5 (1.230-1.250 ~m) are noisy, there are sharp and repetitive stripe noise over the entire image. As for MODIS geolocated data, the stripe noise are irregular and sometimes uncontinuous, it brings a difficult problem to the image retrieving process. A detection method was presented to extract the stripe noise, and a maximum a posteriori (MAP) based algorithm was applied to correct the contaminated pixels. A local gradient based method was used to detect the abnormal pixels. In the MAP method, the likelihood probability density function (PDF) was proposed based on a linear image noise model, and a Huber-Markov model was employed as the prior PDF. The gradient descent optimization method was used to receive the destriped image. The proposed algorithm had been tested using a Terra MODIS band 5 geolocated image. The recovered images demonstrate that the proposed algorithm can remove the irregular stripes effectively. The power spectrum also shows a satisfactory result.

关 键 词:条带噪声 检测 去除条带噪声 Terra卫星 MODIS 最大后验 

分 类 号:TP751.1[自动化与计算机技术—检测技术与自动化装置]

 

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