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Related Concept Videos

Region of Convergence01:17

Region of Convergence

613
The z-transform is a powerful mathematical tool used in the analysis of discrete-time signals and systems. It is a crucial tool in the analysis of discrete-time systems, but its convergence is limited to specific values of the complex variable z. This range of values, known as the Region of Convergence (ROC), is fundamental in determining the behavior and stability of a system or signal. The ROC defines the region in the complex plane where the z-transform converges, which can take various...
613

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IDRLP: Image Dehazing Using Region Line Prior.

Mingye Ju, Can Ding, Charles A Guo

    IEEE Transactions on Image Processing : a Publication of the IEEE Signal Processing Society
    |October 29, 2021
    PubMed
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    A new image dehazing method, IDRLP, uses a region line prior (RLP) to establish a quasi-linear relationship between hazy and clear images. This approach enhances recovery quality and efficiency for clear, robust image restoration.

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    Area of Science:

    • Computer Vision
    • Image Processing

    Background:

    • Hazy images degrade visual quality and hinder downstream tasks.
    • Existing single image dehazing methods often struggle with robustness and efficiency.

    Purpose of the Study:

    • To propose a novel and ultra-robust single image dehazing method named IDRLP.
    • To leverage a region line prior (RLP) for improved image restoration.

    Main Methods:

    • Region segmentation based on scene depth to observe a quasi-linear relationship (RLP).
    • Combining RLP with the atmospheric scattering model (ASM) to derive a recovery formula (RF).
    • Employing a 2D joint optimization function and a guided filter for accurate parameter estimation and noise reduction.

    Main Results:

    • The proposed IDRLP method demonstrates superior recovery quality compared to state-of-the-art techniques.
    • IDRLP achieves ultra-high robustness and efficiency in single image dehazing.
    • Extensive analysis validates the effectiveness of the RLP and joint optimization strategy.

    Conclusions:

    • IDRLP offers a significant advancement in single image dehazing.
    • The RLP and joint optimization approach provides a robust and efficient solution.
    • The method's superiority is confirmed through comprehensive evaluations.