Title :
IB-DFE SIC based receiver structure for IA-precoded MC-CDMA systems
Author :
Joao, Alicia ; Assuncao, Jose ; Silva, Alonso ; Dinis, Rui ; Gameiro, Atilio
Author_Institution :
Inst. de Telecomun., Univ. of Aveiro, Aveiro, Portugal
Abstract :
Interference alignment (IA) is a promising technique that allows high capacity gains in interfering channels. On the other hand, iterative frequency-domain detection receivers based on the IB-DFE concept (Iterative Block Decision Feedback Equalization) can efficiently exploit the inherent space-frequency diversity of the MIMO MC-CDMA systems. In this paper we design a joint iterative IA precoding at the transmitter with IB-DFE successive interference cancellation (SIC) based receiver structure for MC-CDMA systems. The receiver is designed in two steps: first a linear filter is used to mitigate the inter-user aligned interference, and then an iterative frequency-domain receiver is designed to efficiently separate the spatial streams in the presence of residual inter-user aligned interference at the output of the filter. Our scheme achieves the maximum degrees of freedom provided by the IA precoding, while allowing an almost optimum space-diversity gain, with performance close to the matched filter bound (MFB).
Keywords :
MIMO communication; code division multiple access; decision feedback equalisers; diversity reception; filtering theory; interference suppression; iterative decoding; matched filters; radio receivers; radiofrequency interference; IA-precoded MC-CDMA systems; IB-DFE SIC based receiver structure; IB-DFE successive interference cancellation based receiver structure; MIMO MC-CDMA systems; high capacity gains; inherent space-frequency diversity; interference alignment; interfering channels; interuser aligned interference mitigation; iterative block decision feedback equalization; iterative frequency-domain detection receivers; joint iterative IA precoding; linear filter; matched filter bound; optimum space-diversity gain; Equalizers; Interference; MIMO; Multicarrier code division multiple access; Receivers; Silicon carbide; Transmitters; MC-CDMA systems; interference alignment; interference channels; iterative block equalization;
Conference_Titel :
Signal Processing Conference (EUSIPCO), 2014 Proceedings of the 22nd European
Conference_Location :
Lisbon