Literature DB >> 18249671

Foveated video compression with optimal rate control.

S Lee1, M S Pattichis, A C Bovik.   

Abstract

Previously, fovcated video compression algorithms have been proposed which, in certain applications, deliver high-quality video at reduced bit rates by seeking to match the nonuniform sampling of the human retina. We describe such a framework here where foveated video is created by a nonuniform filtering scheme that increases the compressibility of the video stream. We maximize a new foveal visual quality metric. the foveal signal-to-noise ratio (FSNR) to determine the best compression and rate control parameters for a given target bit rate. Specifically, we establish a new optimal rate control algorithm for maximizing the FSNR using a Lagrange multiplier method defined on a curvilinear coordinate system. For optimal rate control, we also develop a piecewise R-D (rate-distortion)/R-Q (rate-quantization) model. A fast algorithm for searching for an optimal Lagrange multiplier lambda* is subsequently presented. For the new models, we show how the reconstructed video quality is affected, where the FSNR is maximized, and demonstrate the coding performance for H.263,+,++/MPEG-4 video coding. For H.263/MPEG video coding, a suboptimal rate control algorithm is developed for fast, high-performance applications. In the simulations, we compare the reconstructed pictures obtained using optimal rate control methods for foveated and normal video. We show that foveated video coding using the suboptimal rate control algorithm delivers excellent performance under 64 kb/s.

Entities:  

Year:  2001        PMID: 18249671     DOI: 10.1109/83.931092

Source DB:  PubMed          Journal:  IEEE Trans Image Process        ISSN: 1057-7149            Impact factor:   10.856


  2 in total

1.  An Efficient Human Instance-Guided Framework for Video Action Recognition.

Authors:  Inwoong Lee; Doyoung Kim; Dongyoon Wee; Sanghoon Lee
Journal:  Sensors (Basel)       Date:  2021-12-12       Impact factor: 3.576

2.  Despeckle Filtering for Multiscale Amplitude-Modulation Frequency-Modulation (AM-FM) Texture Analysis of Ultrasound Images of the Intima-Media Complex.

Authors:  C P Loizou; V Murray; M S Pattichis; M Pantziaris; A N Nicolaides; C S Pattichis
Journal:  Int J Biomed Imaging       Date:  2014-03-09
  2 in total

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