Title :
Resource pooling and effective bandwidths in CDMA networks with multiuser receivers and spatial diversity
Author :
Hanly, Stephen V. ; Tse, David N C
Author_Institution :
Dept. of Electr. Eng., Melbourne Univ., Parkville, Vic., Australia
fDate :
5/1/2001 12:00:00 AM
Abstract :
Much of the performance analysis on multiuser receivers for direct-sequence code-division multiple-access (CDMA) systems is focused on worst case near-far scenarios. The user capacity of power-controlled networks with multiuser receivers are less well-understood. Tse and Hanly (see ibid., vol.45, p.541-657, 1999) have shown that under some conditions, the user capacity of an uplink power-controlled CDMA cell for several important linear receivers can be very simply characterized via a notion of effective bandwidth. We show that these results extend to the case of antenna arrays. We consider a CDMA system consisting of users transmitting to an antenna array with a multiuser receiver, and obtain the limiting signal-to-interference (SIR) performance in a large system using random spreading sequences. Using this result, we show that the SIR requirements of all the users can be met if and only if the sum of the effective bandwidths of the users is less than the total number of degrees of freedom in the system. The effective bandwidth of a user depends only on its own requirement. Our results show that the total number of degrees of freedom of the whole system is the product of the spreading gain and the number of antennas. In the case when the fading distributions to the antennas are identical, we show that a curious phenomenon of “resource pooling” arises: the multiantenna system behaves like a system with only one antenna but with the processing gain the product of the processing gain of the original system and the number of antennas, and the received power of each user the sum of the received powers at the individual antennas
Keywords :
antenna arrays; cellular radio; code division multiple access; diversity reception; fading channels; multiuser channels; power control; radio networks; radio receivers; radiofrequency interference; spread spectrum communication; telecommunication control; CDMA networks; DS-CDMA systems; SIR performance; antenna arrays; degrees of freedom; direct-sequence code-division multiple-access; effective bandwidth; fading distributions; linear receivers; multiantenna system; multiuser receiver; multiuser receivers; performance analysis; power-controlled networks; random spreading sequences; received power; resource pooling; signal-to-interference; spatial diversity; spreading gain; uplink power-controlled CDMA cell; user capacity; worst case near-far scenarios; Antenna arrays; Antenna measurements; Bandwidth; Electrical resistance measurement; Intelligent networks; Multiaccess communication; Performance analysis; Quality of service; Receiving antennas; Transmitting antennas;
Journal_Title :
Information Theory, IEEE Transactions on