Title :
Millimeter-Wave 60 GHz Outdoor and Vehicle AOA Propagation Measurements Using a Broadband Channel Sounder
Author :
Ben-Dor, Eshar ; Rappaport, Theodore S. ; Qiao, Yijun ; Lauffenburger, Samuel J.
Author_Institution :
Electr. & Comput. Eng. Dept., Univ. of Texas at Austin, Austin, TX, USA
Abstract :
Millimeter wave (mm-wave) channel models for outdoor wireless systems with adaptive antennas are needed to exploit the massive bandwidths available at frequencies above 30 GHz. In this paper, we describe 60 GHz wideband propagation measurements in cellular peer-to-peer outdoor environments and in-vehicle scenarios. We present a channel sounder that operates at 38 and 60 GHz with a passband bandwidth of 1.9 GHz. The channel sounder provides sub-ns RMS delay spread measurement resolution and angle-of-arrival (AOA) capabilities. AOA multipath measurements for cellular peer-to-peer communications in an outdoor campus setting show that in all measured locations, some non-Line of Sight (NLOS) antenna orientations can exploit beamforming to create links using scattering in the channel. Measurements using rotating directional antennas in NLOS antenna pointing scenarios found links with up to 36.6 ns RMS delay spread and an average propagation path loss exponent of 4.19, whereas LOS channels provided sub-nanosecond RMS delay spreads and an average path loss exponent of 2.23 (close to free space). Measurements into a vehicle showed similarities to outdoor peer-to-peer environments for LOS channels, but in NLOS situations there was significantly greater path attenuation due to the vehicle interior, vehicle body, windows, and passengers in the vehicle.
Keywords :
broadband networks; cellular radio; direction-of-arrival estimation; directive antennas; millimetre wave antennas; peer-to-peer computing; adaptive antenna; angle-of-arrival capability; bandwidth 1.9 GHz; broadband channel sounder; cellular peer-to-peer communication; cellular peer-to-peer outdoor environment; frequency 38 GHz; frequency 60 GHz; in-vehicle scenario; millimeter wave channel model; nonline of sight antenna orientation; outdoor campus setting; outdoor wireless system; rotating directional antenna; sub-ns RMS delay spread measurement resolution; vehicle angle-of-arrival propagation measurement; vehicle body; vehicle interior; vehicle windows; wideband propagation measurement; Antenna measurements; Broadband antennas; Receiving antennas; Transmitting antennas; Vehicles;
Conference_Titel :
Global Telecommunications Conference (GLOBECOM 2011), 2011 IEEE
Conference_Location :
Houston, TX, USA
Print_ISBN :
978-1-4244-9266-4
Electronic_ISBN :
1930-529X
DOI :
10.1109/GLOCOM.2011.6133581