[1] Haykin S. Cognitive Radio: Brain-empowered Wireless Communications[J]. IEEE Journal on Selected Areas in Communications, 2005, 23(2): 201-220.
[2] Stevenson C, Chouinard G, Lei Zhongding, et al. IEEE 802.22: the First Cognitive Radio Wireless Regional Area Network Standard[J]. IEEE Communications Magazine, 2009, 47(1): 130-138.
[3] Ko Gwangzeen, Franklin A A, You S J, et al. Channel Management in IEEE 802.22 WRAN Systems[J]. IEEE Communications Magazine, 2010, 48(9): 88-94.
[4] Stuber G L, Almalfouh S M, Sale D. Interference Analysis of TV-Band White Space[J]. Proceedings of the IEEE, 2009, 97(4): 741-754.
[5] 刘英挺, 刘欣, 张海林, 等. 避免串谋的动态频谱租赁机制[J]. 吉林大学学报(工学版), 2011, 41(5): 1497-1502.
Liu Yingting, Liu Xin, Zhang Hailin, et al. Collusion-Resistant Dynamic Spectrum Resources Renting and Offering Mechanism[J]. Journal of Jilin University(Engineering and Technology Edition), 2011, 41(5): 1497-1502.
[6] 刘英挺, 张海林, 惠蕾放, 等. 无线区域网单小区中下行链路的子信道分配[J]. 北京邮电大学学报, 2011, 34(6): 69-72.
Liu Yingting, Zhang Hailin, Hui Leifang, et al. A New Subchannel Allocation Scheme for Downlink within a Single Cell of WRAN[J]. Journal of Beijing University of Posts and Telecommunications, 2011, 34(6): 69-72.
[7] Wang B, Wu Y, Liu K J R. Game Theory for Cognitive Radio Networks: an Overview[J]. Computer Networks, 2010, 54(14): 2537-2561.
[8] Nie N, Comaniciu C. Adaptive Channel Allocation Spectrum Etiquette for Cognitive Radio Networks[J]. Mobile Networks and Applications, 2006, 11(6): 779-797.
[9] La Q D, Chew Y H, Soong B H. An Interference Minimization Game Theoretic Subcarrier Allocation Algorithm for OFDMA-based Distributed Systems[C]//Proc of IEEE GLOBECOM. Hawaii: IEEE, 2009: 1-6.
[10] Mustika I W, Yamamoto K, Murata H, et al. Spectrum Sharing with Interference Management for Distributed Cognitive Radio Networks: a Potential Game Approach[C]//Proc of IEEE VTC. Taiwan: IEEE, 2010: 1-5.
[11] Ibars G C. Distributed Cooperation in Cognitive Radio Networks: Overlay Versus Underlay Paradigm[C]//Proc of IEEE VTC. Spain: IEEE, 2009: 1-6.
[12] Xing Y, Mathur C, Haleem M, Dynamic Spectrum Access with QoS and Interference Temperature Constraints[J]. IEEE Trans on Mobile Computing, 2007, 6(4): 423-433.
[13] Gardellin V, Das S K, Lenzini L. A Fully Distributed Game Theoretic Approach to Guarantee Self-Coexistence among WRANs[C]//Proc of IEEE INFOCOM Workshops. San Diego: IEEE, 2010: 1-6.
[14] Kim H, Shin K G. Asymmetry-Aware Real-Time Distributed Joint Resource Allocation in IEEE 802.22 WRANs[C]//Proc of IEEE INFOCOM. San Diego: IEEE, 2010: 1-9.
[15] Kim C J, Song M S, Jeon S I, et al. IEEE 802.22-06/0117r0—2006, Fractional BW Usage for WRAN Systems[S]. Korea: IEEE Press, 2006: 1-29.
[16] Chouinard G. 802.22-04/0002r12—2005, WRAN Reference Model[S]. Canada: IEEE Press, 2005.
[17] Monderer D, Shapley L S. Potential Games[J]. Games and Economic Behavior, 1996(14): 124-143.
[18] Zhao Zhijin, Peng Zhen, Zheng Shilian, et al. Cognitive Radio Spectrum Allocation Using Evolutionary Algorithms[J]. IEEE Trans on Wireless Communications, 2009, 8(9): 4421-4425. |