Treffer: Distributed Source Coding Using Short to Moderate Length Rate-Compatible LDPC Codes : The Entire Slepian-Wolf Rate Region

Title:
Distributed Source Coding Using Short to Moderate Length Rate-Compatible LDPC Codes : The Entire Slepian-Wolf Rate Region
Source:
IEEE transactions on communications. 56(3):400-411
Publisher Information:
New York, NY: Institute of Electrical and Electronics Engineers, 2008.
Publication Year:
2008
Physical Description:
print, 26 ref
Original Material:
INIST-CNRS
Subject Terms:
Telecommunications, Télécommunications, Sciences exactes et technologie, Exact sciences and technology, Sciences appliquees, Applied sciences, Telecommunications et theorie de l'information, Telecommunications and information theory, Théorie de l'information, du signal et des communications, Information, signal and communications theory, Théorie du signal et des communications, Signal and communications theory, Codage, codes, Coding, codes, Télécommunications, Telecommunications, Systèmes, réseaux et services de télécommunications, Systems, networks and services of telecommunications, Services et terminaux de télécommunications, Services and terminals of telecommunications, Télémesure. Télésurveillance. Téléalarme. Télécommande, Telemetry. Remote supervision. Telewarning. Remote control, Application répartie, Distributed application, Aplicación distribuida, Codage source, Source coding, Code contrôle parité, Parity check codes, Code correcteur erreur, Error correcting code, Código corrector error, Correction erreur, Error correction, Corrección error, Décodage, Decoding, Desciframiento, Evaluation performance, Performance evaluation, Evaluación prestación, Réseau capteur, Sensor array, Red sensores, Signal source réparti, Distributed source signal, Señal fuente distribuida, Simulation, Simulación, Télécommunication sans fil, Wireless telecommunication, Telecomunicación sin hilo, Télédétection, Remote sensing, Teledetección, LDPC codes, Slepian-Wolf theorem, distributed source coding, non-uniform error correction, rate-compatible codes, unequal error protection
Document Type:
Fachzeitschrift Article
File Description:
text
Language:
English
Author Affiliations:
School of Computer Science and Engineering, University of Tennessee at Chattanooga, Chattanooga, TN 37403-2598, United States
School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0250, United States
ISSN:
0090-6778
Rights:
Copyright 2008 INIST-CNRS
CC BY 4.0
Sauf mention contraire ci-dessus, le contenu de cette notice bibliographique peut être utilisé dans le cadre d’une licence CC BY 4.0 Inist-CNRS / Unless otherwise stated above, the content of this bibliographic record may be used under a CC BY 4.0 licence by Inist-CNRS / A menos que se haya señalado antes, el contenido de este registro bibliográfico puede ser utilizado al amparo de una licencia CC BY 4.0 Inist-CNRS
Notes:
Telecommunications and information theory
Accession Number:
edscal.20161627
Database:
PASCAL Archive

Weitere Informationen

-In this paper, we propose a scheme for distributed source coding of correlated sources using a single systematic LDPC code. In particular, since we are interested in wireless sensor network applications, we consider LDPC codes with short to moderate lengths that achieve every arbitrary coding rate on the Slepian-Wolf rate region. We simplify the distributed source coding problem to the rate-compatible LDPC code design with an unequal error protection property. The decoders communicate to each other to exchange information bits prior to decoding. However, thereafter, each performs the decoding independently. Therefore, errors in one decoder do not affect the other one. The simulation results confirm that the gap from the theoretical limit remains almost the same for different rates on the Slepian-Wolf rate region. First, we consider two correlated sources. We show that our proposed scheme improves the performance of distributed source coding of two sources considerably. This benefit is more stressed for application with short to moderate length sequences. Then, we study distributed source coding of three sources. As a special case, we investigate three sources that are pairwise correlated with the same correlation probability. We show that the gap from the theoretical limit is smaller than that of previous work. We also investigate the distributed source coding of correlated sources when there is no prior knowledge of the correlation parameter at the time of code design. We note that although the proposed distributed source coding is well suited for sensor networks (where sequences with less than 10000 bits are used), the method can be generalized to other distributed source coding applications.