New architecture for dynamic frame-skipping transcoder

被引:63
作者
Fung, KT [1 ]
Chan, YL [1 ]
Siu, WC [1 ]
机构
[1] Hong Kong Polytech Univ, Ctr Multimedia Signal Proc, Dept Elect & Informat Engn, Kowloon, Hong Kong, Peoples R China
关键词
compressed domain processing; DCT-based transcoder; frame skipping; rate control; video transcoding;
D O I
10.1109/TIP.2002.800890
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Transcoding is a key technique for reducing the bitrate of a previously compressed video signal. A high transcoding ratio may result in an unacceptable picture quality when the fall frame rate of the incoming video bitstream is used. Frame skipping is often used as an efficient scheme to allocate more bits to the representative frames, so that an acceptable quality for each frame can be maintained. However, the skipped frame must be decompressed completely, which might act as a reference frame to nonskipped frames for reconstruction. The newly quantized discrete cosine transform (DCT) coefficients of the prediction errors need to be re-computed for the nonskipped frame with reference to the previous nonskipped frame; this can create undesirable complexity as well as introduce re-encoding errors. In this paper, we propose new algorithms and a novel architecture for frame-rate reduction to improve picture quality and to reduce complexity. The proposed architecture is mainly performed on the DCT domain to achieve a transcoder with low complexity. With the direct addition of DCT coefficients and an error compensation feedback loop, re-encoding errors are reduced significantly. Furthermore, we propose a frame-rate control scheme which can dynamically adjust the number of skipped frames according to the incoming motion vectors and re-encoding errors due to transcoding such that the decoded sequence can have a smooth motion as well as better transcoded pictures. Experimental results show that, as compared to the conventional transcoder, the new architecture for frame-skipping transcoder is more robust, produces fewer requantization errors, and has reduced computational complexity.
引用
收藏
页码:886 / 900
页数:15
相关论文
共 25 条
[1]  
ASSUNCAO P, 1996, IEEE INT C AC SPEECH, V4, P1998
[2]   Fast motion vector estimation using multiresolution-spatio-temporal correlations [J].
Chalidabhongse, J ;
Kuo, CCJ .
IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS FOR VIDEO TECHNOLOGY, 1997, 7 (03) :477-488
[3]   New adaptive pixel decimation for block motion vector estimation [J].
Chan, YL ;
Siu, WC .
IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS FOR VIDEO TECHNOLOGY, 1996, 6 (01) :113-118
[4]   On block motion estimation using a novel search strategy for an improved adaptive pixel decimation [J].
Chan, YL ;
Siu, WC .
JOURNAL OF VISUAL COMMUNICATION AND IMAGE REPRESENTATION, 1998, 9 (02) :139-154
[5]   Edge oriented block motion estimation for video coding [J].
Chan, YL ;
Siu, WC .
IEE PROCEEDINGS-VISION IMAGE AND SIGNAL PROCESSING, 1997, 144 (03) :136-144
[6]   THE DEVELOPMENT OF AN INTEGRATED AUDIOVISUAL CODING STANDARD - MPEG [J].
CHIARIGLIONE, L .
PROCEEDINGS OF THE IEEE, 1995, 83 (02) :151-157
[7]   H.263+:: Video coding at low bit rates [J].
Côté, G ;
Erol, B ;
Gallant, M ;
Kossentini, F .
IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS FOR VIDEO TECHNOLOGY, 1998, 8 (07) :849-866
[8]  
FUNG KT, 2001, P IEEE INT S CIRC SY, P29
[9]   Dynamic frame-skipping in video transcoding [J].
Hwang, JN ;
Wu, TD ;
Lin, CW .
1998 IEEE SECOND WORKSHOP ON MULTIMEDIA SIGNAL PROCESSING, 1998, :616-621
[10]  
*ISO IEC, 1996, 138182 ISOIEC