The dynamic transmission map for dehazing method in single image with tropical atmospheric condition

Noor Asma Husain and Mohd Shafry Mohd Rahim and Sarudin Kari and Abdullah Bade and Huma Chaudhry (2021) The dynamic transmission map for dehazing method in single image with tropical atmospheric condition. Journal of Theoretical and Applied Information Technology, 99 (3). pp. 717-727. ISSN 1992-8645

[img] Text
The dynamic transmission map for dehazing method in single image with tropical atmospheric condition.pdf

Download (36kB)
[img] Text
The dynamic transmission map for dehazing method in single image with tropical atmospheric condition1.pdf
Restricted to Registered users only

Download (1MB)

Abstract

Normally, outdoor images are degraded by light scattering and absorption from the atmosphere's dust, mist, haze, and smoke. These affect the image captured and cause poor visibility, dimmed luminosity, low contrast, and colour distortion. Therefore, it is crucial to restoring images captured, especially in haze conditions called image dehazing. The crucial aim of image dehazing is to improve the details on visibility, edge, and texture and retain the structure and colours of the image without data loss. Most algorithmic methods, considering the large number of algorithms suggested for single image dehazing, introduce dehazing at a certain haze level. There is a lack of a dehazing algorithm focused on the visibility range to overcome several haze levels. This paper proposes an improvement of the dehazing algorithm based on the meteorological visibility range with a dynamic transmission map to fix this problem This algorithm focuses on removing haze at different levels based on the determination of the visibility range, which is different from most existing dehazing algorithms. The dehazing algorithm emphasizes this proposed method contribute to better image quality than the existing state-of-the-art dehazing process.

Item Type: Article
Keyword: Haze , Atmospheric scattering model , Image dehazing , Scattering coefficient , Transmission map
Subjects: Q Science > QK Botany > QK1-989 Botany
Department: FACULTY > Faculty of Science and Natural Resources
Depositing User: SITI AZIZAH BINTI IDRIS -
Date Deposited: 26 Feb 2022 05:33
Last Modified: 26 Feb 2022 05:33
URI: https://eprints.ums.edu.my/id/eprint/31709

Actions (login required)

View Item View Item