Bin Han, Hong Jiang, Ying Luo, and Jinzhi Zhou
[1] L. Li, C. Chen, Y. Wang, T. He, and X. Guan, Adaptivebeacon transmission in cognitive-OFDM-based industrial wire-less networks, IEEE Communications Letters, 21(1), 2017,152–155. [2] E.U. Ogbodo, D. Dorrell, and A.M. Abu-Mahfouz, Cognitiveradio based sensor network in smart grid: Architectures,applications and communication technologies, IEEE Access,5(99), 2017, 19084–19098. [3] B. Zhang, Y. Wu, X. Yi, and X. Yang, Joint communication-motion planning in wireless-connected robotic networks:Overview and design guidelines, International Conf. onCommunications (ICC), Kuala Lumpur, Malaysia, 2016. [4] G. Stamatescu, D. Popescu, and R. Dobrescu, Framework forcognitive radio deployment in large scale WSN-UAV surveil-lance (Switzerland: Springer International Publishing, 2016),41–56. [5] L. Deng, X. Ma, J. Gu, et al., Artificial immune network-basedmulti-robot formation path planning with obstacle avoidance,International Journal of Robotics and Automation, 31(3), 2016,233–242. [6] X.J. You, X.H. He, X.M. Han, et al., Cross-layer parametersreconfiguration in industrial cognitive wireless networks usingMOABCHV algorithm, International Journal of Robotics andAutomation, 33(2), 2018, 110–118. [7] J. Mitola, Cognitive radio: Software radios more personal,IEEE Personal Communications, 6(4), 1999, 13–18. [8] G.F. Sun, X. Feng, X.H. Tian, et al., Coalitional double auctionfor spatial spectrum allocation in Cognitive Radio networks,IEEE Translations on Wireless, Communication, 13(6), 2014,3196–3206. [9] E. Driouch and W. Ajib, Downlink scheduling and resourceallocation for cognitive radio MIMO networks, IEEE Transla-tions on Vehicular Technology, 62(8), 2013, 3875–3885. [10] H.L. Xiao, W.J. Zheng, Z.P. Nie, et al., Interference align-ment for cognitive radio MIMO cognitive system based ongame theory, Journal of University of Electronic Science andTechnology of China, 46(5), 2017, 207–214. [11] S. Sengupta and M. Chatterjee, Designing auction mechanismsfor dynamic spectrum access, Mobile Networks and Applica-tions, 13(5), 2008, 498–515. [12] G. Na, S. Xiaoyan, G. Dunwei, et al., Solving robot pathplanning in an environment with terrains based on intervalmulti-objective PSO, International Journal of Robotics andAutomation, 31(2), 2016, 100–110. [13] J. Elhachmi and Z. Guennoun, Cognitive radio spectrum allo-cation using genetic algorithm, EURASIP Journal on WirelessCommunications and Networking, 2016(1), 2016, 1–11. [14] P. Lin and T.J. Yang, Spectrum allocation based on geneticparticle swarm algorithm in cognitive radio system, RadioEngineering, 44(9), 2014, 12–15. [15] Z.J. Zhao, Z. Peng, S.L. Zheng, et al., Cognitive radio spectrumassignment based on quantum genetic algorithm, Journal ofPhysics, 58(2), 2009, 1358–1363. [16] C.C. Xiao, Researching on spectrum allocation in cognitiveradio networks based on quantum genetic simulated annealingalgorithm, China New Telecommunications, 17(24), 2015, 6–9. [17] C. Shu, L.H. Sun, J.H. Li, and M.M. Gou, Improvement ofquantum genetic algorithm and its application in cognitiveradio spectrum distribution, Journal of Nano Electronics andOptoelectronics, 12, 2017, 1215–1218. [18] Z. Zhao and Z. Peng, Cognitive radio spectrum allocationusing evolutionary algorithms, IEEE Transactions on WirelessCommunications, 8(9), 2009, 4421–4425. [19] X.Y. Zhong, Channel allocation in cellular network based onself-adaptive genetic algorithm, Computer Engineering, 36(17),2010, 189–191. [20] Z.R. Wang, B. Yang, X.C. Lv, and D.W. Cui, Research onan improved quantum genetic algorithm, Journal of Xi’anUniversity of Technology, 28(2), 2012, 145–151. [21] G. Liu, H.Y. Zhao, H. Chen, et al., Spectrum allocationfor cognitive radio network based on improved the quantumgenetic algorithm, High Technology Communication, 25(8),2015, 760–765. [22] D.S. Fu and R. Zhang, Improved quantum genetic algorithmby balancing convergence and diversity, Journal of ComputerSimulation, 30(12), 2013, 105–112. [23] K.-H. Han and J.-H. Kim, On the analysis of the quantum-inspired evolutionary algorithm with a single individual, IEEECongress on Evolutionary Computation, Vancouver, Canada,2006, 2622–2629. [24] H.Y. Zhao, Spectrum allocation based on improved quantumgenetic algorithm in cognitive radio network, Master Disserta-tion, Yanshan University, 2015. [25] P. Lin and T.J. Yang, Spectrum allocation based on improvedgenetic algorithm in cognitive radio system, Computer Simu-lation, 31(2), 2014, 250–254. [26] X. Zhang, R. Zhang, G. Sui, et al., Convergence analysis of dou-ble chains quantum genetic algorithm, Computer Engineering,38(15), 2012, 127–132. [27] W.X. Zhang and Y. Liang, Mathematical foundation of geneticalgorithms (Xi’an, China: Xi’an Jiao Tong University Press,2000). [28] C.Y. Peng, H.T. Zhang, and B.Y. Zhao, Utilization and fairnessin spectrum assignment for opportunistic spectrum access,Mobile Networks and Application, 11(4), 2006, 555–576.
Important Links:
Go Back