Title :
A New Hardware-Efficient Algorithm and Reconfigurable Architecture for Image Contrast Enhancement
Author :
Shih-Chia Huang ; Wen-Chieh Chen
Author_Institution :
Dept. of Electron. Eng., Nat. Taipei Univ. of Technol., Taipei, Taiwan
Abstract :
Contrast enhancement is crucial when generating high quality images for image processing applications, such as digital image or video photography, liquid crystal display processing, and medical image analysis. In order to achieve real-time performance for high-definition video applications, it is necessary to design efficient contrast enhancement hardware architecture to meet the needs of real-time processing. In this paper, we propose a novel hardware-oriented contrast enhancement algorithm which can be implemented effectively for hardware design. In order to be considered for hardware implementation, approximation techniques are proposed to reduce these complex computations during performance of the contrast enhancement algorithm. The proposed hardware-oriented contrast enhancement algorithm achieves good image quality by measuring the results of qualitative and quantitative analyzes. To decrease hardware cost and improve hardware utilization for real-time performance, a reduction in circuit area is proposed through use of parameter-controlled reconfigurable architecture. The experiment results show that the proposed hardware-oriented contrast enhancement algorithm can provide an average frame rate of 48.23 frames/s at high definition resolution 1920 × 1080.
Keywords :
approximation theory; high definition video; image colour analysis; image enhancement; reconfigurable architectures; video signal processing; approximation techniques; contrast enhancement hardware architecture; digital image; hardware cost; hardware utilization; hardware-efficient algorithm; hardware-oriented contrast enhancement algorithm; high-definition video applications; image contrast enhancement; image processing applications; image quality; liquid crystal display processing; medical image analysis; parameter-controlled reconfigurable architecture; video photography; Algorithm design and analysis; Approximation algorithms; Approximation methods; Computer architecture; Equations; Hardware; Real-time systems; Image contrast enhancement; reconfigurable architecture;
Journal_Title :
Image Processing, IEEE Transactions on
DOI :
10.1109/TIP.2014.2348869