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Articles:

[1] J. Mitola III, Cognitive radio: an integrated agent architecture for software defined radio, Ph.D Thesis, KTH Royal Institute of Technology, 2000.

[2]A. Ghasemi, E.S. Sousa, Collaborative spectrum sensing for opportunistic access in fading environment, in: Proc. IEEE DySPAN 2005, November 2005, pp. 131–136.

[3]B. Wild, K. Ramchandran, Detecting primary receivers for cognitive radio applications, in: Proc. IEEE DySPAN 2005, November 2005, pp. 124–130.

[4]J. Mitola III, Cognitive radio for flexible mobile multimedia communication, in: Proc. IEEE International Workshop on Mobile Multimedia Communications (MoMuC) 1999, November 1999,

[5]H. Tang, Some physical layer issues of wide-band cognitive radio system, in: Proc. IEEE DySPAN 2005, November 2005, pp. 151–159.

[6]P. Leaves, K. Moessner, R. Tafazoli, D. Grandblaise, D. Bourse, R. Tonjes, M. Breveglieri, Dynamic spectrum allocation in composite reconfigurable wireless networks, IEEE Comm. Magazine, vol. 42, May 2004, pp. 72–81.

[8]R.W. Brodersen, A. Wolisz, D. Cabric, S.M. Mishra, D. Willkomm, Corvus: a cognitive radio approach for usage of virtual unlicensed spectrum, Berkeley Wireless Research Center (BWRC) White paper, 2004.

[9]M.M. Buddhikot, P. Kolody, S. Miller, K. Ryan, J. Evans, DIMSUMNet: new directions in wireless networking using coordinated dynamic spectrum access, in: Proc. IEEE WoWMoM 2005, June 2005, pp. 78–85.

[10]L. Xu, R. Tonjes, T. Paila, W. Hansmann, M. Frank, M. Albrecht, DRiVE-ing to the internet: dynamic radio for ip services in vehicular environments, in: Proc. of 25th Annual IEEE Conference on ocal Computer Networks, November 2000, pp. 281–289.

[11]T.A. Weiss, J. Hillenbrand, A. Krohn, F.K. Jondral, Efficient signaling of spectral resources in spectrum pooling systems, in: Proc. 10th Symposium on Communications and Vehicular Technology (SCVT), November 2003.

[12]T.A. Weiss, F.K. Jondral, Spectrum pooling: an innovative strategy for the enhancement of spectrum efficiency, IEEE Radio Communication Magazine 42 (March) (2004) 8–14.

[13]S. Haykin, Cognitive radio: brain-empowered wireless communications, IEEE Journal on Selected Areas in Communications 23 (2) (2005) 201–220.

[14]D. Cabric, R.W Brodersen, Physical layer design issues unique to cognitive radio systems, in: Proc. IEEE Personal Indoor and Mobile Radio Communications (PIMRC) 2005, September 2005.

[15]S.M. Nishra, D. Cabric, C. Chang, D. Willkomm, B. Schewick, A. Wolisz, R.W. Brodersen, A real time cognitive radio testbed for physical and link layer experiments, in: Proc. IEEE DySPAN 2005, November 2005, pp. 562–567.

[16]D. Cabric, S.M. Mishra, R.W. Brodersen, Implementation issues in spectrum sensing for cognitive radios, in: Proc. 38th Asilomar Conference on Signals, Systems and Computers 2004, November 2004, pp. 772–776.

[17]X. Jing, D. Raychaudhuri, Spectrum co-existence of IEEE 802.11b and 802.16a networks using CSCC etiquette protocol, in: Proc. IEEE DySPAN 2005, November 2005, pp. 243– 250.

[18]O. Ileri, D. Samardzija, N.B. Mandayam, Demand responsive pricing and competitive spectrum allocation via spectrum server, in: Proc. IEEE DySPAN 2005, November 2005, pp. 194–202.

[19]J.A. Stine, Spectrum management: the killer application of ad hoc and mesh networking, in: Proc. IEEE DySPAN 2005, November 2005, pp. 184–193.

[20]H. Zheng, C. Peng, Collaboration and fairness in opportunistic spectrum access, in: Proc. IEEE ICC 2005, vol. 5, May 2005, pp. 3132–3136.

[21]J. Zhao, H. Zheng, G.-H. Yang, Distributed coordination in dynamic spectrum allocation networks, in: Proc. IEEE DySPAN 2005, November 2005, pp. 259–268.

[22]L. Cao, H. Zheng, Distributed spectrum allocation via local bargaining, in: Proc. IEEE Sensor and Ad Hoc Communications and Networks (SECON) 2005, September 2005, pp. 475–486.

[23]J. Huang, R.A. Berry, M.L. Honig, Spectrum sharing with distributed interference compensation, in: Proc. IEEE DySPAN 2005, November 2005, pp. 88–93.

[24]V. Brik, E. Rozner, S. Banarjee, P. Bahl, DSAP: a protocol for coordinated spectrum access, in: Proc. IEEE DySPAN 2005, November 2005, pp. 611–614.

[25]H. Zheng, L. Cao, Device-centric spectrum management, in: Proc. IEEE DySPAN 2005, November 2005, pp. 56–65.[26]D. Grandblaise, D. Bourse, K. Moessner, P. Leaves, Dynamic spectrum llocation (DSA) and reconfigurability, in: Proc. Software-Defined Radio (SDR) Forum, November 2002.

[26]Q. Zhao, L. Tong, A. Swami, Decentralized cognitive MAC for dynamic spectrum access, in: Proc. IEEE DySPAN 2005, November 2005, pp. 224–232.

[27]S. Sankaranarayanan, P. Papadimitratos, A. Mishra, S. Hershey, A bandwidth sharing approach to improve licensed spectrum utilization, in: Proc. IEEE DySPAN 2005, November 2005, pp. 279–288.

[28]FCC, ET Docket No 03-222 Notice of proposed rule making and order, December 2003.

[29]S. Haykin, Cognitive radio: brain-empowered wireless communications, IEEE Journal on Selected Areas in Communications 23 (2) (2005) 201–220.

[30]Cabric, D., Mishra, S.M., Brodersen, R.W. “Implementation issues in spectrum sensing for cognitive radios” Signals, Systems and Computers, 2004.

[31]A. Sahai, N. Hoven, and R. Tandra. “Some fundamental limits on cognitive radio.” Allerton Conference on Communication, Control, and Computing. Oct. 2004.

[32]N. Hoven. “On the feasibility of cognitive radio,” Master’s thesis. University of California at Berkeley. Berkeley, CA, 2005.

[33]I.F. Akyildiz, Y. Altunbasak, F. Fekri, R. Sivakumar, AdaptNet: adaptive protocol suite for next generation wireless internet, IEEE Communications Magazine 42 (3) (2004) 128–138.

[34]F. Digham, M. Alouini, M. Simon, On the energy detection of unknown signals over fading channels, in: Proc. IEEE ICC 2005, vol. 5, May 2003, pp. 3575–3579.

[35]E. Esteves, The high data rate evolution of the cdma2000 cellular systemMobility and Teletraffic for Wireless Communications, vol. 5, Kluwer Academic Publishers, 2000, pp. 61–72.

[36]G. Marias, Spectrum scheduling and brokering based on QoS demands of competing WISPs, in: Proc. IEEE DySPAN 2005, November 2005, pp. 684–687.

[37]L. Cao, H. Zheng, Distributed spectrum allocation via local bargaining, in: Proc. IEEE Sensor and Ad Hoc Communications and Networks (SECON) 2005, September 2005, pp. 475–486.

[38]C. Peng, H. Zheng, B.Y. Zhao, Utilization and fairness in spectrum assignment for opportunistic spectrum access, in: ACM Mobile Networks and Applications (MONET), 2006

[39]H. Zheng, C. Peng, Collaboration and fairness in opportunistic spectrum access, in: Proc. IEEE ICC 2005, vol. 5, May 2005, pp. 3132–3136.

[40]L. Ma, X. Han, C.-C. Shen, Dynamic open spectrum sharing MAC protocol for wireless ad hoc network, in: Proc. IEEE DySPAN 2005, November 2005, pp. 203–213. I.F. Akyildiz et al. / Computer Networks 50 (2006) 2127–2159 2157

[41]J. Huang, R.A. Berry, M.L. Honig, Spectrum sharing with distributed interference compensation, in: Proc. IEEE DySPAN 2005, November 2005, pp. 88–93.

[42]V. Brik, E. Rozner, S. Banarjee, P. Bahl, DSAP: a protocol for coordinated spectrum access, in: Proc. IEEE DySPAN 2005, November 2005, pp. 611–614.

[43H. Zheng, L. Cao, Device-centric spectrum management, in: Proc. IEEE DySPAN 2005, November 2005, pp. 56–65.][44]V. Kanodia, A. Sabharwal, E. Knightly, MOAR: a multichannel opportunistic auto-rate media access protocol for ad hoc networks, in: Proc. IEEE BROADNETS 2004, October 2004, pp. 600–610.

[45]S. Krishnamurthy, M. Thoppian, S. Venkatesan, R. Prakash, Control channel based MAC-layer configuration, routing and situation awareness for cognitive radio networks, in: Proc. IEEE MILCOM 2005, October 2005.

Slide:

[1] The Future of SDR Adaptive, Aware, or Cognitive Radio OMG Workshop Washington, DC 14 Sep 04

[2] Spectrum Efficiency and Cognitive Radio Thinking Differently About the World of Wireless Eric Humphrey 7.19.2006

[3] Flexible Spectrum Allocation and Cognitive Radio Friedrich K. Jondral Piotr Rykaczewski Universität Karlsruhe (TH) Institut für Nachrichtentechnik San Diego, January 16, 2006

[4] Cognitive Radio WG Brussels 2005 Dr. Keith Nolan Centre for Telecommunications Value-Chain Research Trinity College Dublin

E-book:

[1]Cognitive radio technology / edited by Bruce A. Fette.—1st ed. p. cm.—(Communications engineering series) Includes bibliographical references and index ISBN-13: 978-0-7506-7952-7 (alk. paper) ISBN-10: 0-7506-7952-2 (alk. paper)

[2]Cognitive radio architecture : the engineering foundations of radio XML / by Joseph Mitola. p. cm. Includes bibliographical references and index. ISBN-10: 0-471-74244-9

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