Parallel soft ZF detection for turbo-coded QO-STBC scheme

  • Unhee Park*
  • , Dae Sub Oh
  • , Bon Jun Ku
  • , Youngmin Kim
  • , Sooyoung Kim
  • *Corresponding author for this work

Research output: Contribution to conferenceConference paperpeer-review

Abstract

A zero forcing (ZF) decoder using the pseudo inverse of a channel matrix is generally used for detection of quasi-orthogonal space time block coding (QO-STBC). This ZF detection for QO-STBC should sacrifice not only the decoding complexity but also the diversity gain compared to a simple linear detection for orthogonal STBC schemes. This disadvantage of QO-STBC schemes are mainly result from the interference terms in the detection matrix. In this paper, we propose a parallel detection scheme for QO-STBC, which may enhance the computational efficiency compared to the conventional ZF scheme, especially when combining with turbo codes. We present a very efficient soft decision metrics to be used at the iterative decoder for turbo codes. The simulation results in this paper reveal that the proposed detection scheme produces an almost the same performance to that of the the maximum likelihood (ML) detection, with greatly enhanced computational efficiency.

Original languageEnglish
Title of host publication2010 IEEE 6th International Conference on Wireless and Mobile Computing, Networking and Communications, WiMob'2010
Pages252-255
Number of pages4
DOIs
StatePublished - 2010
Event6th Annual IEEE International Conference on Wireless and Mobile Computing, Networking and Communications, WiMob'2010 - Niagara Falls, ON, Canada
Duration: 2010.10.112010.10.13

Publication series

Name2010 IEEE 6th International Conference on Wireless and Mobile Computing, Networking and Communications, WiMob'2010

Conference

Conference6th Annual IEEE International Conference on Wireless and Mobile Computing, Networking and Communications, WiMob'2010
Country/TerritoryCanada
CityNiagara Falls, ON
Period10.10.1110.10.13

Keywords

  • QO-STBC
  • Soft decision
  • Turbo codes
  • Zero-forcing

Quacquarelli Symonds(QS) Subject Topics

  • Computer Science & Information Systems
  • Communication & Media Studies

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