[1] Akyildiz I F, Lee W Y, Vuran M C, et al. A survey on spectrum management in cognitive radio networks [J]. IEEE Communications Magazine, 2008, 46(4):40-48.
[2] Wang B B, Liu K J R. Advances in cognitive radio networks: a survey [J]. IEEE Journal of Selected Topics in Signal Processing, 2011, 5(1): 5-23.
[3] Mitran P, Le L B, Rosenberg C. Queue-aware resource allocation for downlink OFDMA cognitive radio networks [J]. IEEE Transactions on Wireless Communications, 2010, 9(10): 3100-3111.
[4] Chen C H, Wang C L. Joint subcarrier and power allocation in multiuser OFDM-based cognitive radio systems [C]//2010 IEEE International Conference on Communications. Cape Town, South Africa, 2010: 1-5.
[5] Zhang J, Ansari N. On assuring end-to-end QoE in next generation networks: challenges and a possible solution [J]. IEEE Communications Magazine, 2011, 49(7): 185-191.
[6] Fiedler M, Hossfeld T, Tran-Gia P. A generic quantitative relationship between quality of experience and quality of service [J]. IEEE Network, 2010, 24(2): 36-41.
[7] Sacchi C, Granelli F, Schlegel C.A QoE-oriented strategy for OFDMA radio resource allocation based on min-MOS maximization [J].IEEE Communications Letters, 2011, 15(5):494-496.
[8] Saul A, Auer G. Multiuser resource allocation maximizing the perceived quality [J]. EURASIP Journal on Wireless Communications and Networking, 2009, 2009: 1-15.
[9] Choi L U, Ivrlac M T, Steinbach E, et al. Sequence-level models for distortion-rate behaviour of compressed video [C]//IEEE International Conference on Image Processing. Genoa, Italy, 2005: Ⅱ-486-9.
[10] World Wireless Initiates New Radio. Final report on link level and system level channel models [EB/OL].(2005)[2014-05-30]. http://www.ist-winner.org/DeliverableDocuments/D5.4.pdf.