DocumentCode
1157928
Title
Microcellular propagation characteristics for personal communications in urban and suburban environments
Author
Xia, Howard H. ; Bertoni, Henry L. ; Maciel, Leandro R. ; Lindsay-Stewart, Andrew ; Rowe, Robert
Author_Institution
Telesis Technol. Lab., Walnut Creek, CA, USA
Volume
43
Issue
3
fYear
1994
fDate
8/1/1994 12:00:00 AM
Firstpage
743
Lastpage
752
Abstract
New microcellular systems have been proposed to operate over short radio paths by using low-base station antennas, and transmitting at low power. In order to study radio propagation in the microcellular environments for future personal communications services (PCS), comprehensive radio propagation measurements were conducted by Telesis Technologies Laboratory (TTL) in the San Francisco Bay area using three transmitting antenna heights of 3.2, 8.7, and 13.4 m and two frequencies in the 900 and 1900 MHz bands. The paper reports the path loss measurements made in urban and suburban areas where the receiving mobile was driven along preselected line-of-sight (LOS), zig-zag, and staircase routes to gather information about direct propagation along streets, as well as diffraction over the roofs in suburban areas, and diffraction around the corners in urban areas. The results obtained for the three antenna heights are studied, and show the height gain that can be expected for microcells in different environments
Keywords
automobiles; cellular radio; electromagnetic wave diffraction; microwave links; personal communication networks; radiowave propagation; 1900 MHz; 900 MHz; PCS; San Francisco Bay area; Telesis Technologies Laboratory; corners; diffraction; height gain; line-of-sight; microcells; microcellular propagation characteristics; path loss measurements; personal communications; personal communications services; radio propagation; receiving mobile; roofs; staircase routes; suburban environments; transmitting antenna heights; urban environments; zig-zag route; Antenna measurements; Antennas and propagation; Area measurement; Diffraction; Frequency measurement; Loss measurement; Personal communication networks; Propagation losses; Radio propagation; Transmitting antennas;
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/25.312772
Filename
312772
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