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A Low-Complexity High-Throughput Soft-Output MIMO Decoder

Guo, Zhan LU and Nilsson, Peter LU (2005) IST Mobile & Wireless Communications Summit
Abstract
A low-complexity soft-output decoding algorithm is

proposed for MIMO detection. A VLSI architecture is further proposed to support high-throughput MIMO decoding. The simulation and implementation results show that the proposed algorithm and VLSI architecture can approach the performance of the conventional soft-output MIMO decoding algorithms with lower complexity and higher decoding throughput. The proposed algorithm and VLSI architecture would be promising for emerging MIMO applications such as HSDPA, 802.11n, 802.16e and 802.20. It also shows potentials for the MAGNET date rate classes.
Please use this url to cite or link to this publication:
author
organization
publishing date
type
Contribution to conference
publication status
published
subject
conference name
IST Mobile & Wireless Communications Summit
language
English
LU publication?
yes
id
194383f0-f0c1-49aa-b099-d1c752312bc3 (old id 602892)
alternative location
http://www.eurasip.org/Proceedings/Ext/IST05/papers/461.pdf
date added to LUP
2007-12-06 15:44:07
date last changed
2016-04-16 12:16:37
@misc{194383f0-f0c1-49aa-b099-d1c752312bc3,
  abstract     = {A low-complexity soft-output decoding algorithm is<br/><br>
proposed for MIMO detection. A VLSI architecture is further proposed to support high-throughput MIMO decoding. The simulation and implementation results show that the proposed algorithm and VLSI architecture can approach the performance of the conventional soft-output MIMO decoding algorithms with lower complexity and higher decoding throughput. The proposed algorithm and VLSI architecture would be promising for emerging MIMO applications such as HSDPA, 802.11n, 802.16e and 802.20. It also shows potentials for the MAGNET date rate classes.},
  author       = {Guo, Zhan and Nilsson, Peter},
  language     = {eng},
  title        = {A Low-Complexity High-Throughput Soft-Output MIMO Decoder},
  year         = {2005},
}