Günther Koliander was born in Vienna, Austria, in 1986. He received the Diploma degree in Technical Mathematics (with distinction) from TU Wien, Austria, in 2011 (Diploma thesis “Hilbert Spaces of Entire Functions in the Hardy Space Setting”). Since 2011 he has been with the Institute of Telecommunications, TU Wien, Austria, where he finished his PhD in the WWTF project NOWIRE in April 2015 (Dissertation Information-theoretic analysis of noncoherent block-fading channels and singular random variables). He twice held visiting researcher positions at Chalmers University of Technology, Gothenburg, Sweden.
G. Koliander, G. Pichler, E. Riegler, and F. Hlawatsch, “Entropy and Source Coding for Integer-Dimensional Singular Random Variables,” submitted to IEEE Trans. Inf. Theory. arXiv:1505.03337 [cs.IT]
M. Dörpinghaus, G. Koliander, G. Durisi, E. Riegler, and H. Meyr, “Oversampling Increases the Pre-Log of Noncoherent Rayleigh Fading Channels,” IEEE Trans. Inf. Theory, vol.60, no.9, pp.5673-5681, Sep. 2014, arXiv:1405.0370v2 [cs.IT]
G. Koliander, E. Riegler, G. Durisi, and F. Hlawatsch, “Degrees of freedom of generic block-fading MIMO channels without a priori channel state information,” IEEE Trans. Inf. Theory, vol.60, no.12, pp.7760-7781, Dez. 2014, arXiv:1310.2490 [cs.IT]
G. Pichler, G. Koliander, E. Riegler, and F. Hlawatsch, “Entropy for singular distributions“, in Proc. IEEE Int. Symp. Inf. Theory (ISIT 2014), Honolulu, HI, July 2014, pp. 2484-2488 .
E. Riegler, G. Koliander, W. Yang, and G. Durisi, “How costly is it to learn fading channels?“, in Proc. First Int. Black Sea Conf. Commun. Netw., Batumi, Georgia, July, 2013, pp. 1–5 (invited).
G. Koliander, E. Riegler, G. Durisi, and F. Hlawatsch, “Generic correlation increases noncoherent MIMO capacity“, in Proc. IEEE Int. Symp. Inf. Theory (ISIT 2013), Istanbul, Turkey, July 2013, pp. 2084-2088 . arXiv:1306.1057 [cs.IT]
G. Koliander, E. Riegler, G. Durisi, V. I. Morgenshtern, and F. Hlawatsch, “A lower bound on the noncoherent capacity pre-log for the MIMO channel with temporally correlated fading“, in Proc. Allerton Conf. Comm. Control Comp. (Allerton 2012), Urbana-Champaign, IL, Oct. 2012, pp. 1198–1205. arXiv:1302.2481 [cs.IT]
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