Title :
5 GHz Intra-Vehicle Channel Characterization
Author :
Matolak, David W. ; Chandrasekaran, Arvind
Author_Institution :
Sch. of EECS, Ohio Univ. Athens, Athens, OH, USA
Abstract :
This paper presents wideband wireless channel characterization results for intra-automobile communication in the 5 GHz band. Results pertain to data collected from a mini-van and bus, both parked. Motivating this work is the scarcity of results for intra-automobile wireless channel characteristics. This paper describes some related work, the measurement conditions and procedures, and resulting channel characteristics for the two environments. Measurements were taken using a 50 MHz bandwidth spread spectrum correlator channel sounder, and power delay profiles (PDPs) were collected. We provide root-mean square delay spread (RMS-DS) statistics, and statistical channel models for these two intra-automobile channels. Mean RMS-DS values are approximately 17 ns in the mini-van, and 17 and 22 ns for measurements with two different transmitter locations in the bus. RMS-DS standard deviations range from 2-6 ns. As expected, the RMS-DS values increase with vehicle size and transmitter-receiver distance. Both human movement and the unique physical structures of the intra-automobile environment also strongly affect the channel´s characteristics.
Keywords :
delays; mobile radio; radio receivers; radio transmitters; telecommunication channels; RMS-DS standard deviations; bandwidth spread spectrum correlator channel sounder; frequency 5 GHz; human movement; intra-automobile channels; intra-automobile communication; intra-automobile environment; intra-automobile wireless channel characteristics; intra-vehicle channel characterization; mean RMS-DS values; physical structures; power delay profiles; transmitter-receiver distance; wideband wireless channel characterization; Delay; Fading; Receivers; Transmitters; Vehicles; Wireless communication; Wireless sensor networks;
Conference_Titel :
Vehicular Technology Conference (VTC Fall), 2012 IEEE
Conference_Location :
Quebec City, QC
Print_ISBN :
978-1-4673-1880-8
Electronic_ISBN :
1090-3038
DOI :
10.1109/VTCFall.2012.6399095