References
- P. Harley, 'Short Distance Attenuation Measurements at 900 MHz and 1.8 GHz Using Low Antenna Heights for Microcells,' IEEE J. Selected Areas Commun., vol. 7, no. 1, Jan. 1989
- J. H. Whitteker, 'Measurements of Path Loss at 910 MHz for Proposed Microcell Urban Mobile Systems,' IEEE Trans. Veh. Technol, vo1. 37, no. 3, 1988
- S. T. S. Chia, R. Steele, E. Green, and A. Baran, 'Propagation and Bit Error Ratio Measurements for a Microcellular System,'J. IRE, vo1. 57, pp. 255-66, 1987
- D. M. Black and D. O. Reudink, 'Some Characteristics of Mobile Radio Propagation at 836MHz in the Philadelphia Area,'IEEE Trans. Veh. Technol, vol. VT-21, pp. 45-51, May 1972 https://doi.org/10.1109/T-VT.1972.23499
- A. J. Rustako, Jr., N. Amitay, G. J. Owens, and R. S. Roman, 'Radio Propagation at Microwave Frequencies for Line-Of-Sight Microcellular Mobile and Personal Conununications' IEEE Trans. Veh. Technol., vol. 40, pp. 203-210, 1991 https://doi.org/10.1109/25.69989
- H. H. Xia, H. L. Bertoni, L. R. Maciel, A. L indsay-Stewart, and R. Rowe, 'Radio Propagation Characteristics for Line-of-Sight Microcellulai and Peisonal Comnnmications,' IEEE Trans. Antenna Propagat., vol. 41, no.lO, Oct. 1993, pp. 1439-1447 https://doi.org/10.1109/8.247785
- H. H. Xia, H. L. Bertoni, L. R. Maciel, R. Rowe, and A. Lindsay-Stewart, 'Microcellular Propagation Characteristics for Personal Communications m Urban and Suburban Environments,' IEEE Trans. Veh. Technol., vol. 43, no.3,August 1994, pp. 743-752 https://doi.org/10.1109/25.312772
- D. Har, H. H. Xia, and H. L. Bertoni, 'Path Loss Prediction Model for Microcells,' IEEE Trans. On Veh. Tech., vol. VT-48, pp. 1453-62, Sept. 1999 https://doi.org/10.1109/25.790520
- J. F. Wagen, 'Signal Strength Measurements at 881 MHz for Urban Microcells in Downtown Tampa,' in Proc. Globecom Conf. (Phoenix, AZ, 1991), pp. 1313-17
- H. H. Xia, S. Kim, and H. L. Bertoni, 'Microcellular Propagation Measurements in DallasCity,' IEEE Vehicular Technology Conf. (Secaucus, NJ, 1993)
- A. J. Goldsmith and L. J. Greenstein, 'A Measurement-based Model for Predicting Coverage Areas of Urban Microcells,' IEEE J. Selected Areas Commun., vol. 11, no. 7, Sept. 1993
- J. Walfisch and H. L. Bertoni, 'A Theoretical Model of UHF Propagation in Urban Environments,' IEEE Trans. Antennas Propagar.,vo1. 36, pp. 1788-1796, 1988 https://doi.org/10.1109/8.14401
- D. J. Cichon, T. C. Becker, and M. Dttling, 'Ray Optical Prediction of Outdoor and Indoor Coverage in Urban Macro- and Microcells,' in Proc. IEEE Vehicular Technology Conf. (Atlanta, GA, 1996), pp. 41-45
- T. Kmer, R. Fau, and A. Wsch, 'A Hybrid Propagation Modelling Approach for DCS 1800 Macrocells,'in Proc. IEEE Vehicular Technology Conf. (Atlanta, GA, 1996), pp. 1628-32 https://doi.org/10.1109/VETEC.1996.504033
- COST 231 Final Report ; Chapter 4 : Propagation Prediction Models, pp. 17-21
- G. Lampard andv Vu-Dinh, 'The Effect of Terrain on Radio Propagation in Urban Microcells,' IEEE Trans. Veh. Technol., vol. 42, no. 3, Aug. 1993
- R. Leppnen, J. Lhteenmki, S. Tallqvist, 'Radiowave Propagation at 900 and 1800 MHz Bands in Wooded Environments,' COST 231 TD(92) 112, Helsinki 1992; Paper available from Jaakko Lhteenmki, VTT Information Technology, P. O. Box 1202, SF02044 VTT, Finland
- W. J. Vogel and J. Goldhirsh, 'Tree Attenuation at 869 MHz derived from Remotely Piloted Aircraft Measurements,' IEEE Trans. Antennas Propagat., vol. 34, pp. 1460-4, 1986 https://doi.org/10.1109/TAP.1986.1143781
- E. K. Tameh and A. R. Nix, 'The Use of Measurement Data to Analyse the Performance of Rooftop Diffraction and Foliage Loss Algorithms in a 3-D Integrated Urban/Rural Propagati on Model,' in Proc. IEEE Vehicular Technology Conf. (Otawa, Canada, 1998), pp.303-307
- P. Aikio, R. Gruber, and P. Vainikamen, 'Wideband Radio Channel Measurements for Train Tunne1s,'in Proc. IEEE Vehicular Technology Conf. (Otawa, Canada, 1998), pp. 460-4
- T. Klemenschits, 'Narrow Band Measurements in Road Tunnels,' COST 231 TD(92) 14, Vienna, Austria, 1992
- CSELT-SIRTI (Italy), 'Propagation Measurements inside Tunnels,' COST 231 TD(91) 83, Leidschendam, 1991
- M. Gller, 'Radio Channel Measmements on Lines of Gennan Railway in 900 MHz Frequency Band,' COST 231 TD (92) 20, Vienna, Austria, 1992
- M. Uhlirz, 'GSM in High-speed Trams - Expenmental Results,' COST 231 TD(94) 45, Lisbon, Portugal, 1994
- R. J. C. Bultitude and G. K. Bedal, 'Propagation Characteristics on Microcellular Urban Mobi)e Radio Channels at 910 MHz,' IEEE J. Select. Areas Commun., vol. 5, Nov./Dec. 1987
- Cox, '910 MHz Urban Mobile Radio Propagation : Multipath Characteristics in New York City,' IEEE Trans. Conunun., vol. COM -21, pp. 1188-94, Nov. 1973 https://doi.org/10.1109/TCOM.1973.1091571
- D. M. J. Devasirvatham, R. R. Murray, and D. R. Wolter, 'Time Delay Spread Measdurements in Wireless Local Loop Test Bed,' Proc. VTC'95, pp.241-245
- K. L. Blackard, M. J. Feuerstein, T. S. Rapp aport, S. Y. Seidel and H. H. Xia, 'Path Loss and Delay Spread Models as Functions of Antenna Height for Microcellular System Design,' VTC'92, pp.333-337
- P. Bartolom, 'Temporal Dispersion Measurements for Radio Local Loop Application,' VTC' 95, pp. 257-260
- K. Kalliola, H. El-Sallabi, and P. Vanikamen, 'Dynamic Wideband Measurement of Mobile Radio Channel with Adaptive Antennas,' in Proc. IEEE Vehicular Technology Conf. (Ottawa, Canada, 1998), PP. 21-25