期刊名称:TELKOMNIKA (Telecommunication Computing Electronics and Control)
印刷版ISSN:2302-9293
出版年度:2016
卷号:14
期号:2A
页码:85-91
DOI:10.12928/telkomnika.v14i2A.4363
语种:English
出版社:Universitas Ahmad Dahlan
摘要:In distributed-type video encoding, temporal correlation between key frames is not utilized. Based on this, selection method of encoding mode of key frames is put forward, which is based on band allocation. First, divide coefficient tape gained by key frames after FPGA conversion into low-frequency band and high-frequency band. Part of low-frequency band adopts H.264 encoding and decoding. Then make further selection to encoding mode of high-frequency band. H.264 encoding and decoding and traditional intra-frame encoding and decoding are carried out respectively. Finish selection of encoding mode at decoding end. At last transmit selection of encoding mode to encoding end through feedback channel. Simulation result shows that under the circumstance that complexity at encoding end is not added, method put forward has improved quality of video after decoding, enhancing peak signal to noise ratio (PSNR) of system by about 1-5bB.
其他摘要:In distributed-type video encoding, temporal correlation between key frames is not utilized. Based on this, selection method of encoding mode of key frames is put forward, which is based on band allocation. First, divide coefficient tape gained by key frames after FPGA conversion into low-frequency band and high-frequency band. Part of low-frequency band adopts H.264 encoding and decoding. Then make further selection to encoding mode of high-frequency band. H.264 encoding and decoding and traditional intra-frame encoding and decoding are carried out respectively. Finish selection of encoding mode at decoding end. At last transmit selection of encoding mode to encoding end through feedback channel. Simulation result shows that under the circumstance that complexity at encoding end is not added, method put forward has improved quality of video after decoding, enhancing peak signal to noise ratio (PSNR) of system by about 1-5bB.