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Christian Berger

Researcher at Pontifical Catholic University of Chile

Publications -  213
Citations -  9012

Christian Berger is an academic researcher from Pontifical Catholic University of Chile. The author has contributed to research in topics: Orthogonal frequency-division multiplexing & Communication channel. The author has an hindex of 43, co-authored 196 publications receiving 7338 citations. Previous affiliations of Christian Berger include University of Mainz & Karlsruhe Institute of Technology.

Papers
More filters
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Topolectrical-circuit realization of topological corner modes

TL;DR: In this paper, a topolectrical circuit design for realizing the corner modes is presented, where the modes appear as topological boundary resonances in the corner impedance profile of the circuit.
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Sparse channel estimation for multicarrier underwater acoustic communication: From subspace methods to compressed sensing

TL;DR: Various channel estimators that exploit the channel sparsity in a multicarrier underwater acoustic system are presented, including subspace algorithms from the array precessing literature, namely root-MUSIC and ESPRIT, and recent compressed sensing algorithms in form of Orthogonal Matching Pursuit and Basis Pursuit.
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Application of compressive sensing to sparse channel estimation

TL;DR: It is pointed out that a popular assumption - that multipath channels are sparse in their equivalent baseband representation - has pitfalls and there are over-complete dictionaries that lead to much sparser channel representations and better estimation performance.
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Satellite Remote Sensing of Surface Urban Heat Islands: Progress, Challenges, and Perspectives

TL;DR: An exponentially increasing trend of SUHI research since 2005, with clear preferences for geographic areas, time of day, seasons, research foci, and platforms/sensors is found, and key potential directions and opportunities for future efforts are proposed.
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Signal Processing for Passive Radar Using OFDM Waveforms

TL;DR: This paper derives the exact matched filter formulation for passive radar using OFDM waveforms, and shows that the current approach using Fourier analysis across block channel estimates is equivalent to the matched filter, based on a piecewise constant assumption on the Doppler-induced phase rotation in the time domain.