[1] |
ITU-T G. 1070-2007.Opinion model for video-telephony applications[S].
|
[2] |
YANG F Z, SONG J R, WAN S, et al.Content-Adaptive Packet-Layer Model for Quality Assessment of Networked Video Services[J]. IEEE Journal of Selected Topics in Signal Processing, 2012, 6(6): 672-683.
|
[3] |
YANG F Z.Bitstream-Based Quality Assessment for Networked Video: A Review. IEEE Communications Magazine[N], November 2012.
|
[4] |
YANG F Z, WAN S, QIE Q P, et al.No-Reference Quality Assessment for Networked Video via Primary Analysis of Bit Stream[J]. IEEE Transactions on Circuits and Systems for Video Technology, 2010, 20(11): 1544-1554.
|
[5] |
KHAN A, SUN L F, IFEACHOR E.QoE Prediction Model and its Application in Video Quality Adaptation Over UMTS Networks[J]. IEEE Transactions on Multimedia, 2012, 14(2): 431-442.
|
[6] |
KHAN A, SUN L F, IFEACHOR E.Learning models for video quality prediction over wireless local area network and universal mobile telecommunication system networks[J]. IET Communications, 2010, 4(12): 1389-1403.
|
[7] |
STAELENS N, VAN W G, CROMBECQ K, et al.No-Reference Bitstream-Based Visual Quality Impairment Detection for High Definition H.264/AVC Encoded Video Sequences[J]. IEEE Transactions on Broadcasting, 2012, 58(2): 187-199.
|
[8] |
STAELENS N, DESCHRIJVER D, VLADISLAVLEVA E, et al.Constructing a No-Reference H.264/AVC Bitstream-based Video Quality Metric Using Genetic Programming-based Symbolic Regression[J]. IEEE Transctions on Circuits and Systems for Video Technology, 2013, 23(8): 1322-1333.
|
[9] |
ITU-T, P.910-2008. Subjective video quality assessment methods for multimedia applications[S].
|
[10] |
VQEG, Phase II-2003. Final report from the video quality experts group on the validation of objective models of video quality assessment[S].
|
[11] |
CHIKKERUR S, SUNDARAM V, REISSLEIN M.Objective Video Quality Assessment Methods: A Classification, Review, and Performance Comparison[J]. IEEE Transactions on Broadcasting, 2011, 57(2): 165-182.
|