Title :
Frequency reuse efficiency in CDMA systems: from an uniform to a bell-shaped traffic distribution
Author :
Avila, Cesar Kyn d ; Yacoub, Michel Daoud
Author_Institution :
FEEC, Univ. de Campinas, Brazil
Abstract :
The frequency reuse efficiency for the reverse channel of a code division multiple access cellular system is obtained for different propagation environments and non-uniform traffic scenarios. The propagation environment is defined by its path loss coefficient and the traffic scenario as a two-dimensional Gaussian function which leads to a bell-shaped traffic distribution. The research is detailed for the case in which the peak of the two-dimensional Gaussian function is located at the same position of the central cell-site as that where the parameter F is obtained. For the other cell-sites the parameter is also obtained, but in a limited number of situations. This allows the use of a different efficiency factor for each cell of the system, instead of a constant value. The influence of the frequency reuse efficiency on the cell radius is also investigated for a particular case in which an analytical solution is derived. This analysis shows the strong impact of this factor on the cell area
Keywords :
Gaussian channels; cellular radio; code division multiple access; radiowave propagation; statistical analysis; telecommunication channels; telecommunication traffic; CDMA systems; bell-shaped traffic distribution; cell radius; cell sites; cellular system; code division multiple access; frequency reuse efficiency; non-uniform traffic; path loss coefficient; propagation environments; reverse channel; two-dimensional Gaussian function; Capacity planning; Computational modeling; Equations; Frequency conversion; Frequency measurement; Interference; Multiaccess communication; Parameter estimation; Propagation losses; Traffic control;
Conference_Titel :
Telecommunications Symposium, 1998. ITS '98 Proceedings. SBT/IEEE International
Conference_Location :
Sao Paulo
Print_ISBN :
0-7803-5030-8
DOI :
10.1109/ITS.1998.713110