Title :
Cauchy-Density-Based Basic Unit Layer Rate Controller for H.264/AVC
Author :
Sanz-Rodríguez, Sergio ; Del-Ama-Esteban, Óscar ; De-Frutos-López, Manuel ; Díaz-de-María, Fernando
Author_Institution :
Dept. of Signal Theor. & Commun., Univ. Carlos III de Madrid, Leganés, Spain
Abstract :
The rate control problem has been extensively studied in parallel to the development of the different video coding standards. The bit allocation via Cauchy-density-based rate-distortion modeling of the discrete cosine transform coefficients has proved to be one of the most accurate solutions at picture level. Nevertheless, in some specific applications operating in real-time low-delay environments, a basic unit (BU) layer is recommended in order to provide a good tradeoff between picture quality and delay control. In this letter, a novel BU bit allocation for H.264/advanced video coding is proposed based on a simplified Cauchy probability density function source modeling. The experimental results are twofold: 1) the proposed rate control algorithm (RCA) achieves an average peak signal-to-noise ratio improvement of 0.28 dB respect to a well-known BU layer RCA, while maintaining a similar buffer occupancy evolution, and 2) it achieves to notably reduce the buffer occupancy fluctuations respect to a well-known picture layer RCA, while maintaining similar quality levels.
Keywords :
discrete cosine transforms; rate distortion theory; telecommunication control; video coding; Cauchy probability density function; H.264/AVC; advanced video coding; basic unit layer rate controller; bit allocation; delay control; discrete cosine transform coefficient; picture quality; rate control algorithm; rate-distortion modeling; video coding standard; Basic unit (BU); H264/advanced video coding (AVC); bit allocation; low-delay; rate control;
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
DOI :
10.1109/TCSVT.2010.2051369