Page 280 - Integrated Wireless Propagation Models
P. 280

258    C h a p t e r   F o u r


               14.  Lee, W. C. Y. 8 patents granted in Microcell systems and implemented in Los Angeles
                                                                            1
                   and San Diego in 1991 by Pactel Corp. and listed in Ref. 27 of Chap.  .
                                             o
               1 5 .   Lee, W. C. Y. "Lee's Essentials  f   Wireless Communications" McGraw-Hill, 2001,
                   pp. 75-80.
               16.  Lee, W. C. Y.  "Smaller Cells for Greater Performance." IEEE  Communications
                   Magazine (November 1991): 19-23.
               17.  Lee, W. C. Y. and Lee, D. J. Y. "Pathloss Prediction from Microcell to Macrocell."
                   IEEE 51st VTC2000'S, vol. 3, Tokyo, 2000, 1988-92.
               18.  Lee, W. C. Y. and Lee, D. J. Y. "Microcell Prediction in Dense Urban Area." IEEE
                   Transactions on Vehicular T e chnology 47, no. 1 (1998): 246-53.
               19.  Agilent Technologies. WIZARD Users Manual. Santa Clara, CA: Agilent Technologies,
                   2003.
               20.  Green, E. "Radio Link Design for Microcellular Systems." BT T e chnology Journal 8,
                   no. 1 (1990): 85-96.
               21.  Chia, S. T. S. "Radiowave Propagation and Handover Criteria for Microcells." BT
                   T e chnology Journal 8, no. 4 (1990): 50-61.
                                                                   1
               22.  Bultitude, R. J. C., and Hughes, D. A. "Propagation Loss at  . 8 GHz on Microcellular
                   Mobile Radio Channels." Proceedings IEEE International Symposium on Personal,
                   Indoor and Mobile Radio Communications (PIMRC96), October 1996, 786-90.
               23.  Kaji, M., and Akeyama, A. "UHF-Band Radio Propagation Characteristics for Land
                   Mobile Radio System Using Low Antenna Height Base Station." AP-5 International
                   Symposium Digest 2 (1985) 835-38.
               24.  Bultitude, R. J. C., and Bedal, G. K. "Propagation Characteristics on Microcellular
                   Urban Mobile Radio Channels at 910 MHz." IEEE Journal of Selected Areas in
                   Communications 7 (January 1989): 31-39.
               25.  Greenstein, L. J., Armitay, N., Chu, T. S., et al. "Microcells in Personal Communication
                   Systems." IEEE Communications Magazine 30, no. 12 (December 1992): 76-88.
               26  Jakes, W. C., Jr. Microwave Mobile Communications, John Wiley & Sons, 1974,
                   Chap. 4.
               27.  Lee, W. C. Y. Mobile Communications Engineering. 2nd ed. New York: McGraw­
                   Hill, 1998: 289-90.
               28.  Blaunstein, N. "Average Field Attenuation in the Nonregular Impedance Street
                   Waveguide." IEEE Transactions on Antenna and Propagation 46, no. 12 (December 1998):
                   1 7 82-89.
               29.  Mazar, R., and Bronshtein, A. "Propagation Model of a City Street for Personal and
                   Microcellular Communications." Electronics Letters 33, no. 1 (1997): 91-2.
               30.  Blaunstein, N., and Levin, M. "Prediction of UHF-Wave Propagation in Suburban
                   and Rural Environments." Proceedings URSI Symposium Comm-Sphere '95, 1995,
                   191-200.
               31.  Blaunstein, N., Giladi, R., and Levin, M. "Characteristics Prediction in Urban
                   and Suburban Environments." IEEE Transactions on V e hicular T e chnology 47, no. 1
                   (January 1998): 225-34.
               32.  Dersch, U., and Zollinger, E. "Propagation Mechanisms in Microcell and Indoor
                   Environments." IEEE Transactions on Vehicular T e chnology 43, no. 4 (April 1994):
                   1058-66.
               33.  Bertoni, H. L., Honcharenko, W., Macie 1, L. R., and Xia, H. H. "UHF Propagation
                   Prediction for Wireless Personal Communications." Proceedings of  the IEEE 82 (1994):
                   1333-59.
   275   276   277   278   279   280   281   282   283   284   285