DocumentCode
2091620
Title
28 GHz millimeter wave cellular communication measurements for reflection and penetration loss in and around buildings in New York city
Author
Hang Zhao ; Mayzus, R. ; Shu Sun ; Samimi, M. ; Schulz, J.K. ; Azar, Y. ; Wang, Kangping ; Wong, G.N. ; Gutierrez, F. ; Rappaport, T.S.
Author_Institution
NYU WIRELESS, Polytech. Inst. of New York Univ., Brooklyn, NY, USA
fYear
2013
fDate
9-13 June 2013
Firstpage
5163
Lastpage
5167
Abstract
In this paper, we present reflection coefficients and penetration losses for common building materials at 28 GHz for the design and deployment of future millimeter wave mobile communication networks. Reflections from walls and buildings and penetration losses were measured for indoor and outdoor materials, such as tinted glass, clear glass, brick, concrete, and drywall at 28 GHz in New York City. A 400 Mega-chip-per-second sliding correlator channel sounder and 24.5 dBi steerable horn antennas were used to emulate future mobile devices with adaptive antennas that will likely be used in future millimeter wave cellular systems [1]. Measurements in and around buildings show that outdoor building materials are excellent reflectors with the largest measured reflection coefficient of 0.896 for tinted glass as compared to indoor building materials that are less reflective. We also found that penetration loss is dependent not only on the number of obstructions and distance between transmitter and receiver, but also on the surrounding environment. The greatest penetration loss containing three interior walls of an office building was found to be 45.1 dB, with 11.39 m separation between the transmitter and receiver.
Keywords
cellular radio; horn antennas; mobile communication; radio receivers; radio transmitters; wireless channels; New York city; adaptive antennas; brick; clear glass; concrete; drywall; frequency 28 GHz; indoor building materials; indoor materials; millimeter wave cellular communication measurements; millimeter wave cellular systems; millimeter wave mobile communication networks; mobile devices; outdoor materials; penetration loss; reflection coefficients; reflection loss; sliding correlator channel sounder; steerable horn antennas; tinted glass; Antenna measurements; Antennas and propagation; Building materials; Glass; Loss measurement; 28 GHz; 5G; building penetration; in-building propagation; indoor-to-outdoor penetration; mm-wave communication; reflection;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (ICC), 2013 IEEE International Conference on
Conference_Location
Budapest
ISSN
1550-3607
Type
conf
DOI
10.1109/ICC.2013.6655403
Filename
6655403
Link To Document