An OSIC Based Reduced-Rank MIMO Equalizer Using Conjugate Gradient Algorithm(Wireless Communication Technology)
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概要
- 論文の詳細を見る
A reduced complexity multiple-input multiple-output (MIMO) equalizer with ordered successive interference cancellation (OSIC) is proposed for combating intersymbol interference (ISI) and cochannel interference (CCI) over frequency-selective multipath channels. It is developed as a reduced-rank realization of the conventional MMSE decision feedback equalizer (DFE). In particular, the MMSE weight vectors at each stage of OSIC are computed based on the generalized sidelobe canceller (GSC) technique and reduced-rank processing is incorporated by using the conjugate gradient (CG) algorithm for reduced complexity implementation. The CG algorithm leads to a best low-rank representation of the GSC blocking matrix via an iterative procedure, which in turn gives a reduced-rank equalizer weight vector achieving the best compromise between ISI and CCI suppression. With the dominating interference successfully cancelled at each stage of OSIC, the number of iterations required for the convergence of the CG algorithm decreases accordingly for the desired signal. Computer simulations demonstrate that the proposed reduced-rank MIMO DFE can achieve nearly the same performance as the full-rank MIMO MMSE DFE with an effective rank much lower than the dimension of the signal-plus-interference subspace.
- 社団法人電子情報通信学会の論文
- 2003-09-01
著者
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LEE Ta-Sung
Department of Communication Engineering and Microelectronics and Information Systems Research Center
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Lee Ta-sung
Department Of Communication Engineering And Microelectronics And Information Systems Research Center
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Ho Chung-lien
Department Of Communication Engineering And Microelectronics And Information Systems Research Center
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LIN Gau-Joe
Department of Communication Engineering and Microelectronics and Information Systems Research Center
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Lin Gau-joe
Department Of Communication Engineering And Microelectronics And Information Systems Research Center
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