Direkt zum Inhalt

Heinrich-Hertz-Lehrstuhl

für Informationstheorie und theoretische

Informationstechnik

Sektionen
Persönliche Werkzeuge
Sie sind hier: Startseite » Publikationen » Objekte » 2006 » Precoding for 2x2 Doubly-Dispersive WSSUS Channels

Precoding for 2x2 Doubly-Dispersive WSSUS Channels

Document Actions

Autor

Referenz
6th International ITG-Conference on Source and Channel Coding (SCC 2006), Apr. 2006, http://arxiv.org/abs/cs.IT/0510058.

Abstract

Optimal link adaption to the scattering function of wide sense stationary uncorrelated scattering (WSSUS) mobile communication channels is still an unsolved problem despite its importance for next-generation system design. In multicarrier transmission such link adaption is performed by pulse shaping which in turn is equivalent to precoding with respect to the second order channel statistics. In the present framework a translation of the precoder optimization problem into an optimization problem over trace class operators is used. This problem which is also well-known in the context of quantum information theory is unsolved in general due to its non-convex nature. However in very low dimension the problem formulation reveals an additional analytic structure which again admits the solution to the optimal precoder and multiplexing scheme. Hence, in this contribution the analytic solution of the problem for the 2x2 doubly--dispersive WSSUS channel is presented.

Fachgebiete
  • Multi-carrier Systems
  • Information Theory
  • Applied Mathematics
 
IEEEtran BibTeX-Eintrag
@inproceedings{J06pfwc,
   author          = "Peter Jung", 
   title           = "{Precoding for 2x2 Doubly-Dispersive WSSUS Channels}", 
   booktitle       = "{6th International ITG-Conference on Source and Channel Coding (SCC 2006)}", 
   month           = Apr, 
   year            = "2006", 
   note            = "http://arxiv.org/abs/cs.IT/0510058", 
}

Zuletzt verändert: 16.01.2006 09:52
Nachrichten
« Mai 2013 »
Mo Di Mi Do Fr Sa So
    1 2 3 4 5
6 7 8 9 10 11 12
13 14 15 16 17 18 19
20 21 22 23 24 25 26
27 28 29 30 31    
 
 

Powered by Plone