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  4. Block-Floating-Point Enhanced MMSE Filter Matrix Computation for MIMO-OFDM Communication Systems
 
conference paper

Block-Floating-Point Enhanced MMSE Filter Matrix Computation for MIMO-OFDM Communication Systems

Senning, Carl Christian Sten Dominic  
•
Burg, Andreas Peter  
2013
2013 IEEE 20th International Conference on Electronics, Circuits, and Systems (ICECS)
2013 IEEE International Conference on Electronics, Circuits, and Systems

n this paper we present an architecture for an MMSE filter matrix computation unit for signal detection in MIMO-OFDM communication systems. We propose to compute the required matrix inverse based on a Cholesky decomposition, followed by a Gauss-Jordan matrix inversion of the resulting triangular matrix. The high dynamic range required by this approach is traditionally conquered with custom floating-point formats or with fixed-point number representations with a large number of bits. We show in this paper that a block-floating- point scheme with only two normalization steps throughout the computation of the MMSE filter matrix is sufficient to achieve a BER performance close to that of a double precision floating- point implementation for a MIMO-OFDM systems with 64-QAM modulation. The corresponding circuit complexity is superior to that of a pure fixed-point implementation.

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Type
conference paper
DOI
10.1109/ICECS.2013.6815532
Author(s)
Senning, Carl Christian Sten Dominic  
•
Burg, Andreas Peter  
Date Issued

2013

Published in
2013 IEEE 20th International Conference on Electronics, Circuits, and Systems (ICECS)
Start page

787

End page

790

Subjects

MIMO communication

•

Preprocessing

•

Block-floating-point

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
TCL  
Event nameEvent placeEvent date
2013 IEEE International Conference on Electronics, Circuits, and Systems

Abu Dhabi, UAE

December 8-11, 2013

Available on Infoscience
January 14, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/99521
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