Extension of practical channel transition broadcasting for near video-on-demand applications
Author:
Publisher
Springer Science and Business Media LLC
Subject
Computer Networks and Communications,Hardware and Architecture,Media Technology,Software
Link
http://link.springer.com/content/pdf/10.1007/s11042-013-1436-6.pdf
Reference32 articles.
1. Chand S, Om H (2010) Efficient staircase scheme with seamless channel transition mechanism. Comput Netw 54:462–474
2. Chen Y-W, Chen C-Y (2011) PAS: a new scheduling scheme for broadcasting a video over a single channel. IET Commun 5(7):951–960
3. Chen Y-W, Lin C-C, Huang C-Y (2012) Hybrid broadcasting scheme with low waiting time and buffer requirement for video-on-demand services. IET Commun 6(17):2949–2956
4. Chen Y-N, Tseng L-M (2012) An efficient periodic broadcasting with small latency and buffer demand for near video on demand. Int J Digital Multimedia Broadcast. Article ID 717538, 7
5. Chien W-D, Yeh Y-S, Wang J-S (2005) Practical channel transition for near-VOD services. IEEE Trans Broadcast 51(3):360–365
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1. Efficient periodic broadcasting scheme for video delivery over a single channel;Multimedia Tools and Applications;2014-02-09
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