多光谱图像
消光(光学矿物学)
衰减
失真(音乐)
遥感
计算机科学
多光谱模式识别
频道(广播)
波长
高光谱成像
摩尔吸收率
光学
人工智能
地质学
物理
电信
放大器
带宽(计算)
作者
Feng Huang,Chaozhen Ke,Xianyu Wu,Cuixia Guo,Yu Liu
摘要
Most of the state-of-the-art defogging models presented in the literature assume that the attenuation coefficient of all spectral channels is constant, which inevitably leads to spectral distortion and information bias. To address this issue, this paper proposes a defogging method that takes into account the difference between the extinction coefficients of multispectral channels of light traveling through fog. Then the spatially distributed transmission map of each spectral channel is reconstructed to restore the fog-degraded images. The experimental results of various realistic complex scenes show that the proposed method has more outstanding advantages in restoring lost detail, compensating for degraded spectral information, and recognizing more targets hidden in uniform ground fog than state-of-the-art technologies. In addition, this work provides a method to characterize the intrinsic property of fog expressed as multispectral relative extinction coefficients, which act as a fundament for further reconstruction of multispectral information.
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