Image defogging method and corresponding image defogging device

An image and pixel technology, which is applied in the field of image defogging devices, can solve problems such as reduction and defogging effect parameter errors

Inactive Publication Date: 2013-04-10
HITACHI LTD
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Problems solved by technology

[0024] However, the dark channel assumption has limitations on how the fog acts on the fog-free image, that is, the dehazing method applying the dark channel assumption considers that the value of the fog superimposed on the three color channels is equal, that is to say, the fog is gray (white and black are two extreme values ​​of gray)
This leads to the dehazing effect of the dehazing method based on the dark channel assumption for non-gray fog, such as the yellow-brown sandstorm, etc., due to the parameter error in the estimated degeneration model.

Method used

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  • Image defogging method and corresponding image defogging device
  • Image defogging method and corresponding image defogging device
  • Image defogging method and corresponding image defogging device

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Embodiment Construction

[0057] Embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0058] First, with the help of figure 2 Schematic illustrating the implementation of the standard dark channel hypothesis algorithm in an image fogged by three different colors of fog. Figures (a), (b) and (c) respectively show the calculation results of the dark channel value of the red, green and blue color channels of a certain pixel in the fogged image under three different colors of fog. According to the standard dark channel assumption algorithm, the red channel r is the dark channel. If the color of the fog is gray (that is, the brightness is between white and black), the fog has equal values ​​in the three color channels of red, green and blue, as shown in (a), in which case the dark channel ( The value of the red channel r) correctly reflects the fog density. If the color of the fog is not gray but the value of the red channel among the th...

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Abstract

The invention relates to an image defogging method. The method comprises the following steps: (1)reading the image, (2)calculating and obtaining estimated value of an atmospheric light value of the image as a first estimated value of the atmospheric light value through a standard dark channel hypothetical algorithm, (3)circularly calculating and obtaining the optimum estimated value of the atmospheric light value of the image, calculating and obtaining the estimated value of the atmospheric light value of the image as a second estimated value of the atmospheric light value through a standard dark channel hypothetical algorithm in each cycle, outputting the second estimated value of the atmospheric light value obtained in the current cycle as the optimum estimated value of the atmospheric light value if difference of the first estimated value of the atmospheric light value and the second estimated value of the atmospheric light value obtained in the first cycle is not greater than the threshold value given in advance, or the difference of the second estimated value of the atmospheric light value obtained in the former cycle and the second estimated value of the atmospheric light value obtained in the current cycle is not greater than the threshold value given in advance, and implementing the next cycle if the difference is greater than the threshold value given in advance, (4)calculating the defogging image based on the optimum estimated value of atmospheric light value. The invention also relates to a corresponding image defogging device.

Description

technical field [0001] The invention relates to an image defogging method, which removes fog, haze or smoke in a single input image based on the atmospheric model theory and a dark channel assumption, so as to improve the recognizability of the scene in the image. The invention also relates to a corresponding image defogging device. Background technique [0002] Visibility enhancement of images degraded by atmospheric factors is an important field of image processing. [0003] The above atmospheric factors include fog, haze (which can be understood as lighter fog) and smoke (such as sandstorms, incomplete combustion of vehicle exhaust and smoke from chemical combustion reactions). They have common characteristics: composed of liquid or solid suspended particles, uniformly distributed in the air at least within a certain range, and form complex effects on light propagation, such as blocking, scattering and reflection. The above atmospheric factors are collectively referred ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06T5/00
Inventor 吕越峰三好雅则伊藤诚也李媛
Owner HITACHI LTD
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