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Published in: Wireless Networks 8/2012

01-11-2012

Behavior modeling for spectrum sharing in wireless cognitive networks

Authors: Yinglei Teng, F. Richard Yu, Yifei Wei, Li Wang, Yong Zhang

Published in: Wireless Networks | Issue 8/2012

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Abstract

Cognitive networks are designed based on the concept of dynamic and intelligent network management, characterizing the feature of self-sensing, self-configuration, self-learning, self-consciousness etc. In this paper, focusing on the spectrum sharing and competition, we propose a novel OODA (Orient-Observe-Decide-Act) based behavior modeling methodology to illustrate spectrum access problem in the heterogenous cognitive network which consists of multiple primary networks (PN, i.e. licensed networks) and multiple secondary networks (SN, i.e. unlicensed networks). Two different utility functions are designed for primary users and secondary users respectively based on marketing mechanism to formulate the decide module mathematically. Also, we adopt expectation and learning process in the utility design which considers the variance of channels, transmission forecasting, afore trading histories and etc. A double auction based spectrum trading scheme is established and implemented in two scenarios assorted from the supply-and-demand relationship i.e. LPMS (Less PNs and More SNs) and MPLS (More PNs and Less SNs). After the discussion of the Bayesian Nash Equilibrium, numerical results with four bidding strategies of SNs are presented to reinforce the effectiveness of the proposed utility evaluation based decision modules under two scenarios. Besides, we prove that the proposed behavior model based spectrum access method maintains frequency efficiency comparable with traditional centralized cognitive access approaches and reduces the network deployment cost.

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Literature
1.
go back to reference Thomas, R. W., Friend, D. H., DaSilva, L. A., & MacKenzie, A. B. (2006). Cognitive networks: Adaptation and learning to achieve end-to-end performance objectives. IEEE Communications Magazine, 44(12), 51–57.CrossRef Thomas, R. W., Friend, D. H., DaSilva, L. A., & MacKenzie, A. B. (2006). Cognitive networks: Adaptation and learning to achieve end-to-end performance objectives. IEEE Communications Magazine, 44(12), 51–57.CrossRef
2.
go back to reference Letaief, K. B., & Zhang, W. (2009). Cooperative communications for cognitive radio networks. Proceedings of the IEEE, 97, 878–893.CrossRef Letaief, K. B., & Zhang, W. (2009). Cooperative communications for cognitive radio networks. Proceedings of the IEEE, 97, 878–893.CrossRef
3.
go back to reference Li, Z., Yu, F. R., & Huang, M. (2010). A distributed consensus-based cooperative spectrum sensing in cognitive radios. IEEE Transactions Vehicular Technology, 59, 383–393.CrossRef Li, Z., Yu, F. R., & Huang, M. (2010). A distributed consensus-based cooperative spectrum sensing in cognitive radios. IEEE Transactions Vehicular Technology, 59, 383–393.CrossRef
4.
go back to reference Zhao, Y., Mao, S., Neel, J. O., & Reed, J. (2009). Performance evaluation of cognitive radios: Metrics, utility functions and methodologys. Proceedings of the IEEE, 97(4), 642–659.CrossRef Zhao, Y., Mao, S., Neel, J. O., & Reed, J. (2009). Performance evaluation of cognitive radios: Metrics, utility functions and methodologys. Proceedings of the IEEE, 97(4), 642–659.CrossRef
5.
go back to reference Yu, F. R. (2011). Cognitive radio mobile Ad Hoc networks. New York: Springer.CrossRef Yu, F. R. (2011). Cognitive radio mobile Ad Hoc networks. New York: Springer.CrossRef
6.
go back to reference Devroye, N., Vu, M., & Tarokh, V. (2008). Cognitive radio networks. IEEE Signal Processing Magazine, 125(6), 12–23.CrossRef Devroye, N., Vu, M., & Tarokh, V. (2008). Cognitive radio networks. IEEE Signal Processing Magazine, 125(6), 12–23.CrossRef
7.
go back to reference Guan, Q., Yu, F. R., Jiang, S., & Wei, G. (2010). Prediction-based topology control and routing in cognitive radio mobile Ad hoc networks. IEEE Transactions Vehicular Technology, 59, 4443–4452.CrossRef Guan, Q., Yu, F. R., Jiang, S., & Wei, G. (2010). Prediction-based topology control and routing in cognitive radio mobile Ad hoc networks. IEEE Transactions Vehicular Technology, 59, 4443–4452.CrossRef
8.
go back to reference Yu, F. R., Sun, B., Krishnamurthy, V., & Ali, S. (2011). Application layer qos optimization for multimedia transmission over cognitive radio networks. Wireless Networks, 17, 371–383.CrossRef Yu, F. R., Sun, B., Krishnamurthy, V., & Ali, S. (2011). Application layer qos optimization for multimedia transmission over cognitive radio networks. Wireless Networks, 17, 371–383.CrossRef
9.
go back to reference Luo, C., Yu, F. R., Ji, H., & Leung, V. C. (2010). Cross-layer design for TCP performance improvement in cognitive radio networks. IEEE Transactions Vehicular Technology, 59(5), 2485–2495.CrossRef Luo, C., Yu, F. R., Ji, H., & Leung, V. C. (2010). Cross-layer design for TCP performance improvement in cognitive radio networks. IEEE Transactions Vehicular Technology, 59(5), 2485–2495.CrossRef
10.
go back to reference Hall, M. W., Gil, Y., & Lucas R. F. (2008). Self-configuring applications for heterogeneous systems: Program composition and optimization using cognitive techniques. Proceedings of the IEEE, 96(5), 849–862.CrossRef Hall, M. W., Gil, Y., & Lucas R. F. (2008). Self-configuring applications for heterogeneous systems: Program composition and optimization using cognitive techniques. Proceedings of the IEEE, 96(5), 849–862.CrossRef
12.
go back to reference Mitola, J., & G. M. Jr. (1999). Cognitive radio: Making software radios more personal. IEEE Personal Communications, 6(4), 13–18. Mitola, J., & G. M. Jr. (1999). Cognitive radio: Making software radios more personal. IEEE Personal Communications, 6(4), 13–18.
13.
go back to reference Haykin, S. (2005). Cognitive radio: Brain-empowered wireless communications. IEEE Journal on Seleted Areas in Communications, 23, 201–220.CrossRef Haykin, S. (2005). Cognitive radio: Brain-empowered wireless communications. IEEE Journal on Seleted Areas in Communications, 23, 201–220.CrossRef
14.
go back to reference Yucek, T., & Arslan, H. (2009). A survey of spectrum sensing algorithms for cognitive radio applications. IEEE Communications Surveys & Tutorials, 11(1), 116–130.CrossRef Yucek, T., & Arslan, H. (2009). A survey of spectrum sensing algorithms for cognitive radio applications. IEEE Communications Surveys & Tutorials, 11(1), 116–130.CrossRef
15.
go back to reference Haykin, S., Thomson, D., & Reed, J. (2009). Spectrum sensing for cognitive radio. Proceedings of the IEEE, 97(5), 849–877.CrossRef Haykin, S., Thomson, D., & Reed, J. (2009). Spectrum sensing for cognitive radio. Proceedings of the IEEE, 97(5), 849–877.CrossRef
16.
go back to reference Yu, F. R., Huang, M., & Tang, H. (May 2010). Biologically inspired consensus-based spectrum sensing in mobile Ad hoc networks with cognitive radios. IEEE Networks, pp. 26–30. Yu, F. R., Huang, M., & Tang, H. (May 2010). Biologically inspired consensus-based spectrum sensing in mobile Ad hoc networks with cognitive radios. IEEE Networks, pp. 26–30.
17.
go back to reference Si, P., Ji, H., Yu, F. R., & Leung, V. (2010). Optimal cooperative internetwork spectrum sharing for cognitive radio systems with spectrum pooling. IEEE Transactions Vehicular Technology, 59, 1760–1768.CrossRef Si, P., Ji, H., Yu, F. R., & Leung, V. (2010). Optimal cooperative internetwork spectrum sharing for cognitive radio systems with spectrum pooling. IEEE Transactions Vehicular Technology, 59, 1760–1768.CrossRef
18.
go back to reference Akyildiz, I., Lee, W.-Y., Vuran, M. & Mohanty, S. (2008). A survey on spectrum management in cognitive radio networks. IEEE Communications Magazine, 46(4), 40–48.CrossRef Akyildiz, I., Lee, W.-Y., Vuran, M. & Mohanty, S. (2008). A survey on spectrum management in cognitive radio networks. IEEE Communications Magazine, 46(4), 40–48.CrossRef
19.
go back to reference Niyato, D., & Hossain, E. (2008). Competitive spectrum sharing in cognitive radio networks: A dynamic game approach. IEEE Transactions on Wireless Communications, 7, 1–5. Niyato, D., & Hossain, E. (2008). Competitive spectrum sharing in cognitive radio networks: A dynamic game approach. IEEE Transactions on Wireless Communications, 7, 1–5.
20.
go back to reference Ji, Z., & Liu, K. (2008). Multi-stage pricing game for collusion-resistant dynamic spectrum allocation. IEEE Journal on Seleted Areas in Communications, 26, 182–191.CrossRef Ji, Z., & Liu, K. (2008). Multi-stage pricing game for collusion-resistant dynamic spectrum allocation. IEEE Journal on Seleted Areas in Communications, 26, 182–191.CrossRef
21.
go back to reference Niyato, D., & Hossain, E. (2008). Spectrum trading in cognitive radio networks: a market-equilibrium-based approach. IEEE Wireless Communications, 15, 71–80.CrossRef Niyato, D., & Hossain, E. (2008). Spectrum trading in cognitive radio networks: a market-equilibrium-based approach. IEEE Wireless Communications, 15, 71–80.CrossRef
22.
go back to reference Zhu, J., & Liu, K. (2007). Cognitive radios for dynamic spectrum access—dynamic spectrum sharing: A game theoretical overview. IEEE Communications Magazine, 45, 88–94.MathSciNet Zhu, J., & Liu, K. (2007). Cognitive radios for dynamic spectrum access—dynamic spectrum sharing: A game theoretical overview. IEEE Communications Magazine, 45, 88–94.MathSciNet
23.
go back to reference Malanchini, I., Cesana, M., & Gatti, N. (2009). On spectrum selection games in cognitive radio networks. In Proceedings of the IEEE GLOBECOM, pp. 1–7. Malanchini, I., Cesana, M., & Gatti, N. (2009). On spectrum selection games in cognitive radio networks. In Proceedings of the IEEE GLOBECOM, pp. 1–7.
24.
go back to reference Niyato, D., & Hossain, E. (2008). Competitive spectrum sharing in cognitive radio networks: A dynamic game approach. IEEE Transactions on Wireless Communications, 7(7), 2651–2660.CrossRef Niyato, D., & Hossain, E. (2008). Competitive spectrum sharing in cognitive radio networks: A dynamic game approach. IEEE Transactions on Wireless Communications, 7(7), 2651–2660.CrossRef
25.
go back to reference Wang, S., Xu, P., & Xu, X. (2010). Toda: Truthful online double auction for spectrum allocation in wireless networks. In 2010 IEEE symposium on new frontiers in dynamic spectrum, pp. 1–10. Wang, S., Xu, P., & Xu, X. (2010). Toda: Truthful online double auction for spectrum allocation in wireless networks. In 2010 IEEE symposium on new frontiers in dynamic spectrum, pp. 1–10.
26.
go back to reference Zhou, X., & Zheng, H. (2009). Trust: A general framework for truthful double spectrum auctions. In Proceedings of the IEEE GLOBECOM, pp. 999–1007. Zhou, X., & Zheng, H. (2009). Trust: A general framework for truthful double spectrum auctions. In Proceedings of the IEEE GLOBECOM, pp. 999–1007.
27.
go back to reference Hung-Bin, C., & Chen, K.-C. (2010). Auction-based spectrum management of cognitive radio networks. IEEE Transactions on Vehicular Technology, 59(4), 1923–1935.CrossRef Hung-Bin, C., & Chen, K.-C. (2010). Auction-based spectrum management of cognitive radio networks. IEEE Transactions on Vehicular Technology, 59(4), 1923–1935.CrossRef
28.
go back to reference Niyato, D., & Hossain, E. (2007). “A game-theoretic approach to competitive spectrum sharing in cognitive radio networks,” in Proceedings of the IEEE WCNC, pp. 16–20. Niyato, D., & Hossain, E. (2007). “A game-theoretic approach to competitive spectrum sharing in cognitive radio networks,” in Proceedings of the IEEE WCNC, pp. 16–20.
29.
go back to reference Xing, Y., & Chandramouli, R. (2008). Human behavior inspired cognitive radio network design. IEEE Communications Magazine, 46, 122–127.CrossRef Xing, Y., & Chandramouli, R. (2008). Human behavior inspired cognitive radio network design. IEEE Communications Magazine, 46, 122–127.CrossRef
30.
go back to reference Roy, N., Roy, A., & Das, S. (2007). Cluster-based cooperative spectrum sensing in cognitive radio systems. In Proceedings of IEEE ICC Conference, pp. 2511–2515. Roy, N., Roy, A., & Das, S. (2007). Cluster-based cooperative spectrum sensing in cognitive radio systems. In Proceedings of IEEE ICC Conference, pp. 2511–2515.
31.
go back to reference Guo, C., Peng, T., Qi, Y., & Wang, W. (2009). “Adaptive channel searching scheme for cooperative spectrum sensing in cognitive radio networks. In Proceedings of IEEE WCNC Conference, pp. 1–6. Guo, C., Peng, T., Qi, Y., & Wang, W. (2009). “Adaptive channel searching scheme for cooperative spectrum sensing in cognitive radio networks. In Proceedings of IEEE WCNC Conference, pp. 1–6.
32.
go back to reference Qusay, H. M. (2007). Cognitive networks: Towards self-aware networks. London: Wiley Qusay, H. M. (2007). Cognitive networks: Towards self-aware networks. London: Wiley
33.
go back to reference Niyato, D., Hossain, E., & Han, Z. (2009). Dynamics of multiple-seller and multiple-buyer spectrum trading in cognitive radio networks: A game-theoretic modeling approach. IEEE Transactions on Mobile Computing, 8(8), 1009–1022.CrossRef Niyato, D., Hossain, E., & Han, Z. (2009). Dynamics of multiple-seller and multiple-buyer spectrum trading in cognitive radio networks: A game-theoretic modeling approach. IEEE Transactions on Mobile Computing, 8(8), 1009–1022.CrossRef
34.
go back to reference Fangwen, F., & der Schaar, M. (2009). Learning to compete for resources in wireless stochastic games. IEEE Transactions on Vehicular Technology, 58(4), 1904–1919.CrossRef Fangwen, F., & der Schaar, M. (2009). Learning to compete for resources in wireless stochastic games. IEEE Transactions on Vehicular Technology, 58(4), 1904–1919.CrossRef
35.
go back to reference Xing, Y., Chandramouli, R., & Cordeiro, C. M. (2007). Price dynamics in competitive agile spectrum access markets. IEEE Journal on Selected Areas in Communications, 25, 613–621.CrossRef Xing, Y., Chandramouli, R., & Cordeiro, C. M. (2007). Price dynamics in competitive agile spectrum access markets. IEEE Journal on Selected Areas in Communications, 25, 613–621.CrossRef
36.
go back to reference Shankar, S., Chou, C. T., & Challapali, K., Mangold, S. (2005). Spectrum agile radio: Capacity and QoS implications of dynamic spectrum assignment. In Proceedings of IEEE Globecom’05, pp. 2510–2516. Shankar, S., Chou, C. T., & Challapali, K., Mangold, S. (2005). Spectrum agile radio: Capacity and QoS implications of dynamic spectrum assignment. In Proceedings of IEEE Globecom’05, pp. 2510–2516.
37.
go back to reference Corlett, R. (1986). Features of artificial intelligence languages and their environments. Software Engineering Journal, 1(4), 159–164.CrossRef Corlett, R. (1986). Features of artificial intelligence languages and their environments. Software Engineering Journal, 1(4), 159–164.CrossRef
38.
go back to reference Iosifidis, G., & Koutsopoulos, I. (2010). Double auction mechanisms for resource allocation in autonomous networks. IEEE Journal on Selected Areas in Communications, 28(1), 95–102.CrossRef Iosifidis, G., & Koutsopoulos, I. (2010). Double auction mechanisms for resource allocation in autonomous networks. IEEE Journal on Selected Areas in Communications, 28(1), 95–102.CrossRef
39.
go back to reference Gibbons, R. (1992). game theory for applied economists. London: Princeton University Press. Gibbons, R. (1992). game theory for applied economists. London: Princeton University Press.
Metadata
Title
Behavior modeling for spectrum sharing in wireless cognitive networks
Authors
Yinglei Teng
F. Richard Yu
Yifei Wei
Li Wang
Yong Zhang
Publication date
01-11-2012
Publisher
Springer US
Published in
Wireless Networks / Issue 8/2012
Print ISSN: 1022-0038
Electronic ISSN: 1572-8196
DOI
https://doi.org/10.1007/s11276-012-0443-2

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