DocumentCode :
3180953
Title :
Downlink performance and capacity of distributed antenna systems based on realistic channel model
Author :
Seifi, Nima ; Wolfgang, Andreas ; Ottosson, Tony
Author_Institution :
Chalmers Univ. of Technol., Goteborg
fYear :
2008
fDate :
26-27 Feb. 2008
Firstpage :
249
Lastpage :
253
Abstract :
Recent academic studies of distributed antenna system (DAS) using a frequency-flat fading channel model show that DAS outperforms standard systems, where the base-station (BS) antenna elements are centralized at one location. In this paper the performance of a DAS under time-varying frequency-selective fading based on a realistic channel model is investigated. Specifically, we show that if we shift the hexagonal cellular layout in the conventional system and use sectorized antennas instead of omnidirectional antennas at each BS, the performance in terms of outage probability and outage capacity will improve by a large extent without a need for additional BS towers. The results show that with the same total transmit power and bandwidth DAS can reduce the inter-cell interference (ICI) in a multicell environment and improve the outage capacity especially near the cell boundary.
Keywords :
cellular radio; directive antennas; fading channels; probability; time-varying channels; BS towers; base-station antenna elements; distributed antenna systems; frequency-flat fading channel model; hexagonal cellular layout; intercell interference; multicell environment; omnidirectional antennas; outage capacity; outage probability; realistic channel model; sectorized antennas; time-varying frequency-selective fading; Bandwidth; Capacity planning; Downlink; Fading; Frequency; Interference; MIMO; Poles and towers; Tires; Transmitting antennas;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Smart Antennas, 2008. WSA 2008. International ITG Workshop on
Conference_Location :
Vienna
Print_ISBN :
978-1-4244-1756-8
Electronic_ISBN :
978-1-4244-1757-5
Type :
conf
DOI :
10.1109/WSA.2008.4475566
Filename :
4475566
Link To Document :
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