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Reduced-complexity iterative equalization for severe time-dispersive MIMO channels
DOI:10.1109/TVT.2007.905395.png)
Abstract
En 中文
In this paper, a reduced-complexity soft-interference-cancellation minimum mean-square-error.(SIC-MMSE) iterative equalization method for severe time-dispersive multiple-input-multiple-output (MIMO) channels is proposed. To mitigate the severe time dispersiveness of the channel, a single carrier with cyclic prefix is employed, and the equalization is per-formed in the frequency domain. This simplifies the challenging problem of equalization in MIMO channels due to both the intersymbol interference (ISI) and the coantenna interference (CAI). The proposed iterative algorithm works in two stages. The first stage estimates the transmitted frequency-domain symbols using a low-complexity SIC-MMSE equalizer. The second stage converts the estimated frequency-domain symbols in the time domain and finds their means and variances to incorporate in the SIC-MMSE equalizer in the next iteration. Simulation results show the bit-/symbol-error-rate performance of the SIC-MMSE equalizer, with and without coding, for various modulation schemes.
Keywords:
frequency-domain equalizer
frequency-selective multiple-input-multiple-output (MIMO) channels
iterative receiver
single carrier with cyclic prefix (SCCP)
Journal
IF:
7.1
Papers:
1.8W
Citations:
6.6W

