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Erschienen in: Wireless Personal Communications 3/2014

01.12.2014

Capacity Analysis in Multi-Radio Multi-Channel Cognitive Radio Networks: A Small World Perspective

verfasst von: Xiaoxiong Zhong, Yang Qin, Li Li

Erschienen in: Wireless Personal Communications | Ausgabe 3/2014

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Abstract

Cognitive radio (CR) has emerged as a promising technology to improve spectrum utilization. Capacity analysis is very useful in investigating the ultimate performance limits for wireless networks. Meanwhile, with increasing potential future applications for the CR systems, it is necessary to explore the limitations on their capacity in dynamic spectrum access environment. However, due to spectrum sharing in cognitive radio networks (CRNs), the capacity of the secondary network (SRN) is much more difficult to analyze than that of traditional wireless networks. To overcome this difficulty, in this paper we introduce a novel solution based on small world model to analyze the capacity of SRN. First, we propose a new method of shortcut creation for CRNs, which is based on connectivity ratio. Also, a new channel assignment algorithm is proposed, which jointly considers the available time and transmission time of the channels. And then, we derive the capacity of SRN based on small world model over multi-radio multi-channel (MRMC) environment. The simulation results show that our proposed scheme can obtain a higher capacity and smaller latency compared with traditional schemes in MRMC CRNs.

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Literatur
1.
Zurück zum Zitat Haykin, S. (2005). Cognitive radio: Brain-empowered wireless communications. IEEE Journal on Selected Areas in Communications, 23(2), 201–220.CrossRef Haykin, S. (2005). Cognitive radio: Brain-empowered wireless communications. IEEE Journal on Selected Areas in Communications, 23(2), 201–220.CrossRef
2.
Zurück zum Zitat Devroye, N., Mitran, P., & Tarokh, V. (2006). Limits on communications in a cognitive radio channel. IEEE Communications Magazine, 44(6), 44–49.CrossRef Devroye, N., Mitran, P., & Tarokh, V. (2006). Limits on communications in a cognitive radio channel. IEEE Communications Magazine, 44(6), 44–49.CrossRef
3.
Zurück zum Zitat Srinivasa, S., & Jafar, S. A. (2007). The throughput potential of cognitive radio: A theoretical perspective. IEEE Communications Magazine, 45(5), 73–79.CrossRef Srinivasa, S., & Jafar, S. A. (2007). The throughput potential of cognitive radio: A theoretical perspective. IEEE Communications Magazine, 45(5), 73–79.CrossRef
4.
Zurück zum Zitat Kang, X., Liang, Y.-C., Garg, H. K., et al. (2009). Sensing-based spectrum sharing in cognitive radio networks. IEEE Transactions on Vehicular Technology, 58(8), 4649–4654.CrossRef Kang, X., Liang, Y.-C., Garg, H. K., et al. (2009). Sensing-based spectrum sharing in cognitive radio networks. IEEE Transactions on Vehicular Technology, 58(8), 4649–4654.CrossRef
5.
Zurück zum Zitat Jafarian, A., & Vishwanath, S. (2009). On the capacity of multi-user cognitive radio networks. In Proceedings of IEEE ISIT, 2009 (pp. 601–605). Jafarian, A., & Vishwanath, S. (2009). On the capacity of multi-user cognitive radio networks. In Proceedings of IEEE ISIT, 2009 (pp. 601–605).
6.
Zurück zum Zitat Kang, X., Liang, Y.-C., Nallanathan, A., et al. (2009). Optimal power allocation for fading channels in cognitive radio networks: Ergodic capacity and outage capacity. IEEE Transactions on Wireless Communications, 8(2), 940–950.CrossRef Kang, X., Liang, Y.-C., Nallanathan, A., et al. (2009). Optimal power allocation for fading channels in cognitive radio networks: Ergodic capacity and outage capacity. IEEE Transactions on Wireless Communications, 8(2), 940–950.CrossRef
7.
Zurück zum Zitat Li, C., & Dai, H. (2011). Transport throughput of secondary networks in spectrum sharing systems. In Proceedings of IEEE INFOCOM, 2011 (pp. 2732–2740). Li, C., & Dai, H. (2011). Transport throughput of secondary networks in spectrum sharing systems. In Proceedings of IEEE INFOCOM, 2011 (pp. 2732–2740).
8.
Zurück zum Zitat Zhou, P., Chang, Y., & Copeland, J. A. (2010). Capacity and delay scaling in cognitive radio ad hoc networks: Impact of primary user activity. In Proceedings of IEEE GLOBECOM, 2010 (pp. 1–6). Zhou, P., Chang, Y., & Copeland, J. A. (2010). Capacity and delay scaling in cognitive radio ad hoc networks: Impact of primary user activity. In Proceedings of IEEE GLOBECOM, 2010 (pp. 1–6).
9.
Zurück zum Zitat Fridman, A., Weber, S., Dandekar, K. R., et al. (2008). Cross-layer multicommodity capacity expansion on ad hoc wireless networks of cognitive radios. In Proceedings of CISS, 2008 (pp. 676–680). Fridman, A., Weber, S., Dandekar, K. R., et al. (2008). Cross-layer multicommodity capacity expansion on ad hoc wireless networks of cognitive radios. In Proceedings of CISS, 2008 (pp. 676–680).
10.
Zurück zum Zitat Shi, Y., Hou, Y. T., Kompella, S., et al. (2011). Maximizing capacity in multihop cognitive radio networks under the SINR model. IEEE Transactions on Mobile Computing, 10(7), 954–967.CrossRef Shi, Y., Hou, Y. T., Kompella, S., et al. (2011). Maximizing capacity in multihop cognitive radio networks under the SINR model. IEEE Transactions on Mobile Computing, 10(7), 954–967.CrossRef
11.
Zurück zum Zitat Watts, D. J., & Strogatz, S. H. (1998). Collective dynamics of small-world networks. Nature, 393(6638), 440–442.CrossRef Watts, D. J., & Strogatz, S. H. (1998). Collective dynamics of small-world networks. Nature, 393(6638), 440–442.CrossRef
12.
Zurück zum Zitat Collins, J. J., & Chow, C. C. (1998). It’s a small world. Nature, 393, 409–410.CrossRef Collins, J. J., & Chow, C. C. (1998). It’s a small world. Nature, 393, 409–410.CrossRef
13.
Zurück zum Zitat Helmy, A. (2003). Small worlds in wireless networks. IEEE Communications Letters, 7(10), 490–492.CrossRef Helmy, A. (2003). Small worlds in wireless networks. IEEE Communications Letters, 7(10), 490–492.CrossRef
14.
Zurück zum Zitat Guidoni, D. L., Boukerche, A., Souza, F. S. H., et al. (2010). A small world model based on multi-interface and multi-channel to design heterogeneous wireless sensor networks. In Proceedings of IEEE GLOBECOM, 2010 (pp. 1–5). Guidoni, D. L., Boukerche, A., Souza, F. S. H., et al. (2010). A small world model based on multi-interface and multi-channel to design heterogeneous wireless sensor networks. In Proceedings of IEEE GLOBECOM, 2010 (pp. 1–5).
15.
Zurück zum Zitat Azimdoost, B., Sadjadpour, H. R., & Garcia-Luna-Aceves, J. J. (2013). Capacity of wireless networks with social behavior. IEEE Transactions on Wireless Communications, 12(1), 60–69.CrossRef Azimdoost, B., Sadjadpour, H. R., & Garcia-Luna-Aceves, J. J. (2013). Capacity of wireless networks with social behavior. IEEE Transactions on Wireless Communications, 12(1), 60–69.CrossRef
16.
Zurück zum Zitat How, K. C., Ma, M., & Qin, Y. (2011). Routing and QoS provisioning in cognitive radio networks. Elsevier Computer Networks, 55(1), 330–342.CrossRef How, K. C., Ma, M., & Qin, Y. (2011). Routing and QoS provisioning in cognitive radio networks. Elsevier Computer Networks, 55(1), 330–342.CrossRef
17.
Zurück zum Zitat Goldsmith, A., Jafar, S. A., Maric, I., & Srinivasa, S. (2009). Breaking spectrum gridlock with cognitive radios: an information theoretic perspective. In Proceedings of the IEEE, 97(5), 894–914. Goldsmith, A., Jafar, S. A., Maric, I., & Srinivasa, S. (2009). Breaking spectrum gridlock with cognitive radios: an information theoretic perspective. In Proceedings of the IEEE, 97(5), 894–914.
18.
Zurück zum Zitat Jain, R. (1991). The art of computer systems performance analysis: Techniques for experimental design, measurement, simulation, and modeling. New York: Wiley-Interscience. Jain, R. (1991). The art of computer systems performance analysis: Techniques for experimental design, measurement, simulation, and modeling. New York: Wiley-Interscience.
19.
Zurück zum Zitat Brik, V., Rozner, E., Banerjee, S., et al. (2005). DSAP: A protocol for coordinated spectrum access. In Proceedings of IEEE DySPAN 2005 (pp. 611–614). Brik, V., Rozner, E., Banerjee, S., et al. (2005). DSAP: A protocol for coordinated spectrum access. In Proceedings of IEEE DySPAN 2005 (pp. 611–614).
20.
Zurück zum Zitat Buddhikot, M., Kolodzy, P., Miller, S., et al. (2005). DIMSUMnet: New directions in wireless networking using coordinated dynamic spectrum. In Proceedings IEEE WoWMoM, 2005 (pp. 78–85). Buddhikot, M., Kolodzy, P., Miller, S., et al. (2005). DIMSUMnet: New directions in wireless networking using coordinated dynamic spectrum. In Proceedings IEEE WoWMoM, 2005 (pp. 78–85).
21.
Zurück zum Zitat Ma, Z., & Wang, H. (2012). Dynamic spectrum allocation with maximum efficiency and fairness in interactive cognitive radio networks. Wireless Personal Communications, 64(2), 439–455.CrossRef Ma, Z., & Wang, H. (2012). Dynamic spectrum allocation with maximum efficiency and fairness in interactive cognitive radio networks. Wireless Personal Communications, 64(2), 439–455.CrossRef
22.
Zurück zum Zitat Yuan, Y., Bahl, P., Chandra, R., et al. (2007). Allocating dynamic time-spectrum blocks in cognitive radio networks. In Proceedings ACM MobiHoc, 2007 (pp. 130–139). Yuan, Y., Bahl, P., Chandra, R., et al. (2007). Allocating dynamic time-spectrum blocks in cognitive radio networks. In Proceedings ACM MobiHoc, 2007 (pp. 130–139).
23.
Zurück zum Zitat Zhang, L., Zeng, K., & Mohapatra, P. (2011). Opportunistic spectrum scheduling for mobile cognitive radio networks in white spaces. In Proceedings IEEE WCNC, 2011 (pp. 844–849). Zhang, L., Zeng, K., & Mohapatra, P. (2011). Opportunistic spectrum scheduling for mobile cognitive radio networks in white spaces. In Proceedings IEEE WCNC, 2011 (pp. 844–849).
24.
Zurück zum Zitat Ahmadi, M., Zhuang, Y., & Pan, J. (2012). Distributed robust channel assignment for multi-radio cognitive radio networks. In Proceedings IEEE VTC (Fall), 2012 (pp. 1–5). Ahmadi, M., Zhuang, Y., & Pan, J. (2012). Distributed robust channel assignment for multi-radio cognitive radio networks. In Proceedings IEEE VTC (Fall), 2012 (pp. 1–5).
25.
Zurück zum Zitat Zhong, X., Qin, Y., Yang, Y., & Li, L. (2014). CROR: Coding-aware opportunistic routing in multi-channel cognitive radio networks. In Proceedings IEEE GLOBECOM 2014. Zhong, X., Qin, Y., Yang, Y., & Li, L. (2014). CROR: Coding-aware opportunistic routing in multi-channel cognitive radio networks. In Proceedings IEEE GLOBECOM 2014.
26.
Zurück zum Zitat Gupta, P., & Kumar, P. R. (2000). The capacity of wireless networks. IEEE Transactions on Information Theroy, 46(2), 388–404.CrossRefMATHMathSciNet Gupta, P., & Kumar, P. R. (2000). The capacity of wireless networks. IEEE Transactions on Information Theroy, 46(2), 388–404.CrossRefMATHMathSciNet
27.
Zurück zum Zitat Akyildiz, I. F., Lee, W. Y., & Chowdhury, K. R. (2009). CRAHNs: Cognitive radio ad hoc networks. Elsevier Ad Hoc Networks, 7(5), 810–836.CrossRef Akyildiz, I. F., Lee, W. Y., & Chowdhury, K. R. (2009). CRAHNs: Cognitive radio ad hoc networks. Elsevier Ad Hoc Networks, 7(5), 810–836.CrossRef
28.
Zurück zum Zitat Ghasemi, A., & Sousa, E. S. (2005). Collaborative spectrum sensing for opportunistic access in fading environments. In Proceedings of IEEE DySPAN, 2005 (pp. 131–136). Ghasemi, A., & Sousa, E. S. (2005). Collaborative spectrum sensing for opportunistic access in fading environments. In Proceedings of IEEE DySPAN, 2005 (pp. 131–136).
29.
Zurück zum Zitat Kyasanur, P., & Vaidya, N. (2005). Capacity of multi-channel wireless networks: Impact of number of channels and interfaces. In Proceedings of ACM MOBICOM, 2005 (pp. 43–57). Kyasanur, P., & Vaidya, N. (2005). Capacity of multi-channel wireless networks: Impact of number of channels and interfaces. In Proceedings of ACM MOBICOM, 2005 (pp. 43–57).
30.
Zurück zum Zitat Junior, P. R. W., Fonseca, M., Munaretto, A., et al. (2011). ZAP: A distributed channel assignment algorithm for cognitive radio networks. EURASIP Journal on Wireless Communications and Networking, 2011, 27.CrossRef Junior, P. R. W., Fonseca, M., Munaretto, A., et al. (2011). ZAP: A distributed channel assignment algorithm for cognitive radio networks. EURASIP Journal on Wireless Communications and Networking, 2011, 27.CrossRef
Metadaten
Titel
Capacity Analysis in Multi-Radio Multi-Channel Cognitive Radio Networks: A Small World Perspective
verfasst von
Xiaoxiong Zhong
Yang Qin
Li Li
Publikationsdatum
01.12.2014
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 3/2014
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-014-1981-y

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