Title :
A Downlink Transmission Method for OFDM Cellular Systems with Inter-Cell Interference Cancellation Using Simplified MLD based on MMSE QRD-M Algorithm
Author :
Mikami, Manabu ; Fujii, Teruya
Author_Institution :
Wireless Syst. R&D Center, Softbank Mobile Corp., Tokyo
Abstract :
For next generation mobile radio communication, one-cell-frequency-reuse OFDM systems are attracting considerable attention. In such systems, it is necessary to improve the throughput performance of users at the cell-edge. This paper introduces an effective signal detection method with ICI canceller for OFDM cellular systems. The proposed method is an enhancement of a simplified MLD (Maximum Likelihood Detection) in which the signal path search space includes not only the desired signal space but also the interference signal space. This algorithm uses the MMSE QR decomposition of the virtual MIMO channel matrix and the M-algorithm in order to reduce the computational complexity of the original MLD. Its transmission performance is evaluated by computer simulation and it is confirmed that the signal detection that the proposed method can improve the throughput performance of the MS at the cell-edge in fully-loaded OFDM cellular systems. This paper also clarifies the tolerance of the frequency offset difference between local oscillators in the adjacent base stations for the proposed signal detection method.
Keywords :
MIMO communication; OFDM modulation; computational complexity; interference (signal); interference suppression; least mean squares methods; maximum likelihood detection; mobile radio; search problems; ICI canceller; MIMO channel matrix; MMSE QRD-M algorithm; OFDM cellular systems; computational complexity; downlink transmission method; frequency offset difference; inter-cell interference cancellation; interference signal space; maximum likelihood detection; next generation mobile radio communication; one-cell-frequency-reuse OFDM systems; signal detection method; signal path search space; Downlink; Interference cancellation; Land mobile radio; MIMO; Matrix decomposition; Maximum likelihood detection; Mobile communication; OFDM; Signal detection; Throughput;
Conference_Titel :
Vehicular Technology Conference, 2008. VTC Spring 2008. IEEE
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-1644-8
Electronic_ISBN :
1550-2252
DOI :
10.1109/VETECS.2008.453