An Improved Square-root Algorithm for V-BLAST Based on Efficient Inverse Cholesky Factorization
March 11, 2020 Β· Declared Dead Β· π IEEE Transactions on Wireless Communications
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Authors
Hufei Zhu, Wen Chen, Bin Li, Feifei Gao
arXiv ID
2003.05129
Category
eess.SP: Signal Processing
Cross-listed
cs.IT
Citations
45
Venue
IEEE Transactions on Wireless Communications
Last Checked
6 months ago
Abstract
A fast algorithm for inverse Cholesky factorization is proposed, to compute a triangular square-root of the estimation error covariance matrix for Vertical Bell Laboratories Layered Space-Time architecture (V-BLAST). It is then applied to propose an improved square-root algorithm for V-BLAST, which speedups several steps in the previous one, and can offer further computational savings in MIMO Orthogonal Frequency Division Multiplexing (OFDM) systems. Compared to the conventional inverse Cholesky factorization, the proposed one avoids the back substitution (of the Cholesky factor), and then requires only half divisions. The proposed V-BLAST algorithm is faster than the existing efficient V-BLAST algorithms. The expected speedups of the proposed square-root V-BLAST algorithm over the previous one and the fastest known recursive V-BLAST algorithm are 3.9~5.2 and 1.05~1.4, respectively.
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