Title :
Semi-blind beamspace-time interference cancellation using subspace channel identification for DS-WCDMA systems
Author :
Casella, Ivan RS ; Sousa, Elvino S. ; Jeszensky, Paul Jean E
Author_Institution :
Centro de Pesquisa a Desenvolvimento de Informatica a Automacao, Brazil
Abstract :
It was shown recently that semi-blind methods can be effective for separation, estimation, and classification of sources in wireless systems. These methods overcome difficulties of training algorithms (reduction of data information throughput) and blind ones (impossibility to classify separated source and multi-modal optimization due to nonlinearities). In this paper, we present a semi-blind spatial-temporal beamforming receiver that uses the recently proposed semi-blind constant modulus algorithm with channel identification (SBCMACI) to perform joint channel equalization, multipath energy combination and spatial interference cancellation for asynchronous direct sequence wide band code division multiple access (DS-WCDMA) systems. The simulation results show a significant performance improvement and reduction of required training symbols when compared against a receiver employing a training-based spatial-temporal recursive least squares (RLS) beamformer.
Keywords :
adaptive equalisers; array signal processing; channel estimation; code division multiple access; interference suppression; mobile radio; multipath channels; radio receivers; spread spectrum communication; SBCMACI; asynchronous DS-WCDMA systems; beamspace-time interference cancellation; channel equalization; direct sequence wide band code division multiple access; multipath energy combination; performance improvement; semi-blind constant modulus algorithm with channel identification; spatial interference cancellation; spatial-temporal beamforming receiver; subspace channel identification; training symbol reduction; Adaptive arrays; Antenna arrays; Channel estimation; Interference cancellation; Multiaccess communication; Multiple access interference; Optimization methods; Signal processing; Signal processing algorithms; Throughput;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 2002. The 13th IEEE International Symposium on
Print_ISBN :
0-7803-7589-0
DOI :
10.1109/PIMRC.2002.1046489