DocumentCode
795024
Title
Performance of simulcast wireless techniques for personal communication systems
Author
Ariyavisitakul, Sirikiat ; Darcie, Thomas E. ; Greenstein, Larry J. ; Phillips, Mary R. ; Shankaranarayanan, N.K.
Author_Institution
AT&T Res., Holmdel, NJ, USA
Volume
14
Issue
4
fYear
1996
fDate
5/1/1996 12:00:00 AM
Firstpage
632
Lastpage
643
Abstract
Broadband analog transport facilities using fiber or fiber/coax cable can play a significant role in the evolution of the network infrastructure for personal communications services (PCSs). Low-power PCS systems require a dense grid of radio ports to provide connectivity to the telephone network. Analog transport has a number of important advantages over digital transmission facilities, including the flexibility to support a variety of air interface formats, shared infrastructure cost with other services such as video distribution, and centralized call processing allowing the use of low cost and simple radio ports. A simulcast technique can be used in such systems to permit low rates of handoff (no handoff within each simulcast area) and sharing of hardware resources among multiple radio ports. This paper provides a detailed model and a simulation analysis of the cochannel interference and noise performance as well as the resource sharing benefit of a simulcast PCS system. Several potential PCS air interfaces are considered, including time division multiple access (TDMA) and code division multiple access (CDMA) techniques. Our investigation shows that the impact of multiple antenna noise in a simulcast system is offset by the improved signal-to-interference (SIR) ratio brought about by distributed antennas. Even with distributed antennas, multiple antenna noise places a limit on the maximum number of radio ports that can be assigned to each simulcast group. This limit, however, is shown to have little impact on the achievable resource sharing benefit of simulcasting (i.e., grouping beyond this limit has diminishing returns). A saving of 40% to 60%, in terms of the required central hardware resources, is typical for both TDMA and CDMA systems in suburban environments
Keywords
broadband networks; cochannel interference; code division multiple access; land mobile radio; noise; personal communication networks; radiofrequency interference; radiowave propagation; thermal noise; time division multiple access; CDMA; air interface formats; broadband analog transport facilities; centralized call processing; cochannel interference; distributed antennas; low handoff rates; low power PCS systems; network infrastructure; noise performance; optical fiber; optical fiber/coax cable; personal communication systems; personal communications services; radio ports; shared infrastructure cost; signal to interference ratio; simulation analysis; simulcast PCS system; simulcast technique; simulcast wireless techniques, radio propagation model; suburban environments; system performance; telephone network; time division multiple access; video distribution; Coaxial cables; Costs; Hardware; Multiaccess communication; Optical fiber cables; Optical fiber communication; Personal communication networks; Power cables; Resource management; Time division multiple access;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/49.490414
Filename
490414
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