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  4. Forward-Aware Information Bottleneck-Based Vector Quantization for Noisy Channels
 
Zitierlink DOI
10.26092/elib/3175
Verlagslink DOI
10.1109/TCOMM.2020.3019447

Forward-Aware Information Bottleneck-Based Vector Quantization for Noisy Channels

Veröffentlichungsdatum
2020-08-25
Autoren
Hassanpour, Shayan  
Monsees, Tobias  
Wübben, Dirk  
Dekorsy, Armin  
Zusammenfassung
The main focus will be on the indirect Joint Source-Channel Coding problem in which a noisy observation of the source has to be quantized ahead of transmission over an error-prone forward link to a remote processing unit. To that end, we present here a complete extension to the preliminary Information Bottleneck method by providing the formal optimal solution to this newly established Variational Principle, together with an algorithm, the Forward-Aware Vector Information Bottleneck (FAVIB), to pragmatically tackle its underlying non-convex design optimization. FAVIB extends the current state-of-the-art approaches via capacitating a full sweep over the entire gamut of the trade-off parameter. Consequently, the trajectory of all achievable points in the Information-Compression plane becomes traversable via soft mappings. It will be shown that, by enjoying an inherent error protection, this novel compression scheme can obviate the call for separate channel coding on the forward path.
Schlagwörter
Channel quantization

; 

Error-prone forward channel

; 

Information bottleneck

; 

Mutual Information

; 

Noisy Channels
Verlag
IEEE
Institution
Universität Bremen  
Fachbereich
Fachbereich 01: Physik/Elektrotechnik (FB 01)  
Institute
Arbeitsbereich Nachrichtentechnik
Dokumenttyp
Artikel/Aufsatz
Zeitschrift/Sammelwerk
IEEE Transactions on Communications  
Band
68
Heft
12
Startseite
7911
Endseite
7926
Zweitveröffentlichung
Ja
Dokumentversion
Postprint
Lizenz
Alle Rechte vorbehalten
Sprache
Englisch
Dateien
Lade...
Vorschaubild
Name

Hassanpour_Dekorsy et al_Forward-Aware Information Bottleneck-Based Vector Quantization_2020-accepted-version.pdf

Size

1.93 MB

Format

Adobe PDF

Checksum

(MD5):a4b57893d744b80e538e3cc1dcd1c4c3

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