Distributed space-time trellis code design for relay systems with cascade nakagami channels

Title Distributed space-time trellis code design for relay systems with cascade nakagami channels
Author İlhan, H., Altunbaş, İ., Uysal, Murat
Publication Date: 2010
Publication Place - IEEE
Subject Nakagami channels, Error statistics, Space-time codes, Trellis codes
Type Document
Language Turkish
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 978-1-4244-9672-3
Record ID a712d758-c73e-4e75-9bf7-dcf58743d7c1
Library Location Electrical & Electronics Engineering
Date 2010
Notes Due to copyright restrictions, the access to the full text of this article is only available via subscription.
Sample Text In this study, error performance analysis was carried out when the channels of a single-role, cooperative and coding system were distributed in cascade Nakagami distribution. The code design criterion for distributed space-time codes was determined by using the upper limit of the system's general binary error probability, and 8-state distributed space-time trellis codes were designed for 4-PSK and 8-PSK modulations using this criterion. The error performances of the designed codes were evaluated by computer simulation and compared with those of the reference codes.
DOI 10.1109/SIU.2010.5653836
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Distributed space-time trellis code design for relay systems with cascade nakagami channels

Author İlhan, H., Altunbaş, İ., Uysal, Murat
Publication Date 2010
Publication Place - IEEE
Subject Nakagami channels, Error statistics, Space-time codes, Trellis codes
Type Document
Language Turkish
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 978-1-4244-9672-3
Record ID a712d758-c73e-4e75-9bf7-dcf58743d7c1
Library Location Electrical & Electronics Engineering
Date 2010
Notes Due to copyright restrictions, the access to the full text of this article is only available via subscription.
Sample Text In this study, error performance analysis was carried out when the channels of a single-role, cooperative and coding system were distributed in cascade Nakagami distribution. The code design criterion for distributed space-time codes was determined by using the upper limit of the system's general binary error probability, and 8-state distributed space-time trellis codes were designed for 4-PSK and 8-PSK modulations using this criterion. The error performances of the designed codes were evaluated by computer simulation and compared with those of the reference codes.
DOI 10.1109/SIU.2010.5653836
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