On the capacity of a cellular CDMA system
K.S. Gilhousen, Irwin M. Jacobs, Roberto Padovani, Andrew J. Viterbi, L.A. Weaver, C.E. Wheatley
Abstract
K.S. Gilhousen, Irwin M. Jacobs, Roberto Padovani, Andrew J. Viterbi, L.A. Weaver, C.E. Wheatley
Abstract
It is shown that, particularly for terrestrial cellular telephony, the interference-suppression feature of CDMA (code division multiple access) can result in a many-fold increase in capacity over analog and even over competing digital techniques. A single-cell system, such as a hubbed satellite network, is addressed, and the basic expression for capacity is developed. The corresponding expressions for a multiple-cell system are derived. and the distribution on the number of users supportable per cell is determined. It is concluded that properly augmented and power-controlled multiple-cell CDMA promises a quantum increase in current cellular capacity.>
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It is shown that, particularly for terrestrial cellular telephony, the interference-suppression feature of CDMA (code division multiple access) can result in a many-fold increase in capacity over analog and even over competing digital techniques. A single-cell system, such as a hubbed satellite network, is addressed, and the basic expression for capacity is developed. The corresponding expressions for a multiple-cell system are derived. and the distribution on the number of users supportable per cell is determined. It is concluded that properly augmented and power-controlled multiple-cell CDMA promises a quantum increase in current cellular capacity.>
Key concepts: Code division multiple access, Computer science, Cellular network, Interference (communication), Spread spectrum, Computer network, Electronic engineering, Engineering