Title :
Motion vector analysis based homography estimation for efficient HEVC compression of 2D and 3D navigation video sequences
Author :
Springer, Dominic ; Simmet, Franz ; Niederkorn, Dieter ; Kaup, Andre
Abstract :
Navigation systems have become complex devices in automobiles nowadays. As part of large in-car infotainment systems, these devices undergo extensive hardware and software tests in order to assert correct system behavior under all circumstances. During field tests, the display output is typically recorded in compressed form for days or weeks, followed by a thorough analysis of the video data. In this paper, we demonstrate how to setup an HEVC-based compression solution specifically designed for navigation sequence content. We show how rotational motion, which is a dominant characteristic, can be estimated and compensated in an efficient way. We avoid any complex feature-based approaches for global motion estimation but find precise motion parameters by analyzing and filtering motion vector sets produced by HEVC during encoding. While achieving compression efficiency similar to a feature-based approach, processing time for global motion estimation can be significantly reduced.
Keywords :
data compression; filtering theory; image sequences; motion compensation; motion estimation; navigation; traffic engineering computing; video coding; 2D navigation video sequences; 3D navigation video sequences; automobiles; complex feature-based approach; correct system behavior; efficient HEVC compression; field tests; global motion estimation; large in-car infotainment systems; motion vector analysis based homography estimation; motion vector set filtering; precise motion parameters; rotational motion; software tests; video data; HEVC; Motion Vector Analysis; RANSAC; Rotational Motion Estimation; Video Compression;
Conference_Titel :
Image Processing (ICIP), 2013 20th IEEE International Conference on
Conference_Location :
Melbourne, VIC
DOI :
10.1109/ICIP.2013.6738359