Abstract:
We consider a slow fading multiple-input multiple-output (MIMO) system with channel state information at both the transmitter and receiver. A well-known precoding scheme ...Show MoreMetadata
Abstract:
We consider a slow fading multiple-input multiple-output (MIMO) system with channel state information at both the transmitter and receiver. A well-known precoding scheme is based upon the singular value decomposition (SVD) of the channel matrix, which transforms the MIMO channel into parallel subchannels. Despite having low maximum likelihood decoding (MLD) complexity, this SVD precoding scheme provides a diversity gain which is limited by the diversity gain of the weakest subchannel. We therefore propose X- and Y-Codes, which improve the diversity gain of the SVD precoding scheme but maintain the low MLD complexity, by jointly coding information across a pair of subchannels. In particular, subchannels with high diversity gain are paired with those having low diversity gain. A pair of subchannels is jointly encoded using a 2\,\times\,2 real matrix, which is fixed a priori and does not change with each channel realization. For X-Codes, these rotation matrices are parameterized by a single angle, while for Y-Codes, these matrices are left triangular matrices. Moreover, we propose X-, Y-Precoders with the same structure as X-, Y-Codes, but with encoding matrices adapted to each channel realization. We observed that X-Codes/Precoders are good for well-conditioned channels, while Y-Codes/Precoders are good for ill-conditioned channels.
Published in: IEEE Transactions on Information Theory ( Volume: 57, Issue: 6, June 2011)
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- IEEE Keywords
- Index Terms
- Multiple-input Multiple-output ,
- Multiple-input Multiple-output Precoding ,
- Low Complexity ,
- Singular Value ,
- Singular Value Decomposition ,
- Channel State ,
- Real Matrices ,
- Ill-conditioned ,
- Channel Matrix ,
- Multiple-input Multiple-output Systems ,
- Channel Realizations ,
- Diversity Gain ,
- Single Angle ,
- Multiple-input Multiple-output Channel ,
- Precoding Scheme ,
- Pairing ,
- Decoding ,
- Minimum Distance ,
- Average Error ,
- Additive Noise ,
- Average Error Probability ,
- Diversity Order ,
- Error Probability ,
- Average Probability ,
- Code Vector ,
- Minimum Euclidean Distance ,
- Information Symbols ,
- Fading Channel ,
- Codeword ,
- Error Performance
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Multiple-input Multiple-output ,
- Multiple-input Multiple-output Precoding ,
- Low Complexity ,
- Singular Value ,
- Singular Value Decomposition ,
- Channel State ,
- Real Matrices ,
- Ill-conditioned ,
- Channel Matrix ,
- Multiple-input Multiple-output Systems ,
- Channel Realizations ,
- Diversity Gain ,
- Single Angle ,
- Multiple-input Multiple-output Channel ,
- Precoding Scheme ,
- Pairing ,
- Decoding ,
- Minimum Distance ,
- Average Error ,
- Additive Noise ,
- Average Error Probability ,
- Diversity Order ,
- Error Probability ,
- Average Probability ,
- Code Vector ,
- Minimum Euclidean Distance ,
- Information Symbols ,
- Fading Channel ,
- Codeword ,
- Error Performance
- Author Keywords