Title :
Feasibility and Power Control for Linear Multiuser Receivers in CDMA Networks
Author :
Catrein, Daniel ; Mathar, Rudolf
Author_Institution :
Ericsson Res., Ericsson GmbH, Herzogenrath
fDate :
11/1/2008 12:00:00 AM
Abstract :
This paper is concerned with linear multiuser receivers for code division multiple access (CDMA). Mainly three are of practical relevance: the matched filter (MF), the successive interference cancellation (SIC) and the minimum mean squared error (MMSE) receiver. For the first time, an explicit representation of the signal-to-interference-plus-noise (SINR) ratio for the linear SIC receiver under general random spreading is given. For the MMSE receiver the SINR is obtained by using the asymptotic large system regime as an accurate approximation. Once the SINR for each receiver type is known, the question arises what quality-of-service (QoS) requirements can be supported by an adequate power assignment. A vector of QoS requirements (gammai) is called feasible, if there exists some power assignment such that the SINR of each user i does not fall short of threshold gammai. It is shown that for each receiver type there exists a componentwise minimal power assignment such that the SINR of each user equals this threshold. This minimal vector may be determined for the MF and SIC receiver by solving a system of linear equations with coefficients explicitly known. For the MMSE receiver in the large system regime an iterative algorithm is derived, which converges to the optimum power allocation.
Keywords :
code division multiple access; interference suppression; iterative methods; least mean squares methods; matched filters; power control; quality of service; radio receivers; telecommunication congestion control; CDMA networks; MMSE; QoS; asymptotic large system regime; code division multiple access; iterative algorithm; linear equations; linear multiuser receivers; matched filter; minimum mean squared error receiver; optimum power allocation; power control; quality-of-service requirements; signal-to-interference-plus-noise ratio; successive interference cancellation; Equations; Interference cancellation; Iterative algorithms; Matched filters; Multiaccess communication; Power control; Quality of service; Signal to noise ratio; Silicon carbide; Vectors; Matched filter, successive interference cancellation; large system regime, standard interference function, large system regime; minimum mean squared error, random spreading sequences;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/T-WC.2008.070906