DocumentCode :
1272156
Title :
Spatial and temporal characteristics of 60-GHz indoor channels
Author :
Xu, Hao ; Kukshya, Vikas ; Rappaport, Theodore S.
Author_Institution :
Lucent Technol. Bell Labs., Holmdel, NJ, USA
Volume :
20
Issue :
3
fYear :
2002
fDate :
4/1/2002 12:00:00 AM
Firstpage :
620
Lastpage :
630
Abstract :
This article presents measurement results and models for 60-GHz channels. Multipath components were resolved in time by using a sliding correlator with 10-ns resolution and in space by sweeping a directional antenna with 7° half power beamwidth in the azimuthal direction. Power delay profiles (PDPs) and power angle profiles (PAPs) were measured in various indoor and short-range outdoor environments. Detailed multipath structure was retrieved from PDPs and PAPs and was related to site-specific environments. Results show an excellent correlation between the propagation environments and the multipath channel structures. The measurement results confirm that the majority of the multipath components can be determined from image based ray tracing techniques for line-of-sight (LOS) applications. For non-LOS (NLOS) propagation through walls, the metallic structure of composite walls must be considered. From the recorded PDPs and PAPs, received signal power and statistical parameters of angle-of-arrival and time-of-arrival were also calculated. These parameters accurately describe the spatial and temporal properties of millimeter-wave channels and can be used as empirical values for broadband wireless system design for 60-GHz short-range channels
Keywords :
broadband networks; direction-of-arrival estimation; indoor radio; millimetre wave propagation; multipath channels; ray tracing; 60 GHz; NLOS propagation; PAPs; PDPs; angle-of-arrival; broadband wireless system design; composite walls; directional antenna; image based ray tracing techniques; indoor channels; line-of-sight applications; metallic structure; millimeter-wave channels; multipath components; nonLOS propagation; power angle profiles; power delay profiles; propagation environments; received signal power; spatial characteristics; statistical parameters; temporal characteristics; time-of-arrival; Antenna measurements; Correlators; Delay; Directional antennas; Millimeter wave propagation; Millimeter wave technology; Multipath channels; Power measurement; Ray tracing; Spatial resolution;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/49.995521
Filename :
995521
Link To Document :
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