ZF-DFE transceiver design for time-varying MIMO channels using space-time generalized triangular decomposition
Creators
Abstract
We consider the design of MIMO transceivers with zeroforcing (ZF) decision feedback detection over time-varying MIMO channels. The data vectors are grouped into spacetime blocks (ST-blocks) for the spatial and temporal precoding to take advantage of the diversity offered by time-varying channels. We extend the generalized triangular decomposition (GTD) for the case of time-varying channels by introducing the space-time GTD (ST-GTD). Based on ST-GTD and the channel prediction, we propose the space-time geometric mean decomposition (ST-GMD) based system which minimizes the arithmetic mean square error (MSE) for every ST-block. We also present the causal ST-GTD based system which does not require channel prediction. The simulations show that this system achieves the same BER performance asymptotically as the ST-GMD based system. In moderate high SNR, the proposed systems have superior BER performance over the conventional GMD-based systems.
Additional Information
© 2010 IEEE. Issue Date: 14-19 March 2010. Date of Current Version: 28 June 2010. Work supported in parts by the ONR grant N00014-08-1-0709 and the California Institute of Technology.Attached Files
Files
Liu2010p134292009_Ieee_International_Conference_On_Acoustics_Speech_And_Signal_Processing_Vols_1-_8_Proceedings.pdf
Additional details
Identifiers
- Eprint ID
- 23287
- Resolver ID
- CaltechAUTHORS:20110412-134216292
Funding
- Office of Naval Research (ONR)
- N00014-08-1-0709
- Caltech
Dates
- Created
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2011-05-26Created from EPrint's datestamp field
- Updated
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2021-11-09Created from EPrint's last_modified field