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透射率和大气光自适应估计的暗通道去雾 被引量:9
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作者 邱东芳 黄光辉 +1 位作者 刘星 杨兵 《计算机应用》 CSCD 北大核心 2017年第A01期176-179,186,共5页
针对暗通道先验理论去雾算法景深突变区域容易出现光晕、不满足暗通道先验理论区域出现颜色失真、大气光估计不准确容易导致偏色现象,提出了自适应透射率和大气光估计的去雾算法。通过Canny算子结合形态学膨胀运算确定易出现光晕效应的... 针对暗通道先验理论去雾算法景深突变区域容易出现光晕、不满足暗通道先验理论区域出现颜色失真、大气光估计不准确容易导致偏色现象,提出了自适应透射率和大气光估计的去雾算法。通过Canny算子结合形态学膨胀运算确定易出现光晕效应的区域,在该区域上采用像素等级差诱导高斯核函数得到的自适应高斯滤波器来消除光晕效应。其次,提出一种天空区域透射率估计方法处理因不满足暗原色原理出现的天空区域颜色失真问题。最后,提出先估计大气光方向,再最大化大气光方向与前1%最亮像素点的相似度的大气光估计方法。实验表明,该算法获得的透射率图精细,复原图像自然,能够有效去除光晕效应,修正天空区域的颜色失真。 展开更多
关键词 暗通道图 透射率 大气光估计 大气散射模型 自适应高斯滤波器
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Accelerated haze removal for a single image by dark channel prior 被引量:5
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作者 Bo-xuan YUE Kang-ling LIU +1 位作者 Zi-yang WANG Jun LIANG 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2019年第8期1109-1119,共11页
Haze scatters light transmitted in the air and reduces the visibility of images.Dealing with haze is still a challenge for image processing applications nowadays.For the purpose of haze removal,we propose an accelerat... Haze scatters light transmitted in the air and reduces the visibility of images.Dealing with haze is still a challenge for image processing applications nowadays.For the purpose of haze removal,we propose an accelerated dehazing method based on single pixels.Unlike other methods based on regions,our method estimates the transmission map and atmospheric light for each pixel independently,so that all parameters can be evaluated in one traverse,which is a key to acceleration.Then,the transmission map is bilaterally filtered to restore the relationship between pixels.After restoration via the linear hazy model,the restored images are tuned to improve the contrast,value,and saturation,in particular to offset the intensity errors in different channels caused by the corresponding wavelengths.The experimental results demonstrate that the proposed dehazing method outperforms the state-of-the-art dehazing methods in terms of processing speed.Comparisons with other dehazing methods and quantitative criteria(peak signal-to-noise ratio,detectable marginal rate,and information entropy difference)are introduced to verify its performance. 展开更多
关键词 Haze removal Dark channel prior Hazy image model Bilateral filtering
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