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TU Berlin

Inhalt des Dokuments

Dr. Florian Straube

Dr. rer. nat. Dipl.-Ing. Florian Straube
room: EN 107/108
phone: +49 30 - 314 245 60
email: florian.straube [at] tu-berlin.de

Fields of Research

line array optimization, sound reinforcement, sound field synthesis, filter design, signal processing, loudspeakers, microphones

Teaching Activities

Tutorials in "Audio Technologies 2: Digital Audio" (WiSe 2014/2015)

Tutorials in "Virtual Acoustics" (SoSe 2015 + SoSe 2016 + SoSe 2017 + SoSe2018)

Supervised/Reviewed Theses

In progress:

--

Completed:

Aslantürk, M. (2018): "Simulation of a commercial 3D wave field synthesis system." - Master's Thesis

Helmholz, H. (2018): "Eine freie Toolbox zur raumabhängigen Lautsprecher-Equalisierung durch Generierung digitaler Filter." - Master's Thesis

Trochowski, M. (2018): "Modellierung von Nichtlinearitäten in Lautsprechern mit Methoden des Maschinellen Lernens." - Master's Thesis

Sheng, M. (2018): "Electroacoustic Efficiency of the Thermoacoustic Transducer Based on r-GO Folio." - Master's Thesis

Bonillo, D.A. (2018): "Analytical and Numerical Approaches for Optimising the Curving of Touring Line Source Arrays." - Master's Thesis

Bux, M. (2017): "Wahrnehmung von Phasenänderungen bei der Bewegung im Schallfeld von Lautsprechersystemen." - Master's Thesis

Kern, S. (2017): "Optimierung der Abhörbedingungen in einem Übertragungswagen." - Master's Thesis

Publications

2018

Straube, F.; Schultz, F.; Makarski, M.; Weinzierl, S. (2018). Mixed Analytical-Numerical Filter Design for Optimized Electronic Control of Line Source Arrays. J. Audio Eng. Soc. 66(9), 690–702.


Straube, F.; Schultz, F.; Bonillo, D.A.; Weinzierl, S. (2018). An Analytical Approach for Optimizing the Curving of Line Source Arrays. J. Audio Eng. Soc. 66(1/2), 4–20.


2017

Straube, F.; Schultz, F.; Bonillo, D. A.; Weinzierl, S. (2017). An Analytical Approach for Optimizing the Curving of Line Source Arrays. Proc. of the 142nd Audio Eng. Soc. Conv. , .


Straube, F.; Bonillo, D. A. ; Schultz, F.; Weinzierl, S. (2017). Zur Optimierung der Kruemmung von Line Source Arrays. Fortschritte der Akustik: Tagungsband d. 43. DAGA 1418–1421.


Lemke, M.; Straube, F.; Sesterhenn, J.; Weinzierl, S. (2017). Adjungierten-basierte Schallfeldsynthese und Beschallung. Fortschritte der Akustik: Tagungsband d. 43. DAGA , 1422–1425.


Lemke, M.; Straube, F.; Schultz, F.; Sesterhenn, J.; Weinzierl, S. (2017). Adjoint-Based Time Domain Sound Reinforcement. Proc. of the 3rd Audio Eng. Soc. Int. Conf. on Sound Reinforcement , .


2016

Straube, F.; Schultz, F.; Makarski, M.; Weinzierl, S. (2016). Optimized Driving Functions for Curved Line Source Arrays Using Modeled and Measured Loudspeaker Data. Fortschritte der Akustik: Tagungsband d. 42. DAGA 1136–1139.


2015

Straube, F.; Schultz, F.; Weinzierl, S. (2015). On the Effect of Spatial Discretization of Curved Line Source Arrays. Fortschritte der Akustik: Tagungsband d. 41. DAGA 459–462.


Straube, F.; Schultz, F.; Makarski, M.; Spors, S.; Weinzierl, S. (2015). Evaluation Strategies for the Optimization of Line Source Arrays. Proc. of the 59th AES Int. Conf. On Sound Reinforcement , .


 

 

The AES paper "An Analytical Approach for Optimizing the Curving of Line Source Arrays" is the winner of the AES 142nd Convention Best Peer-Reviewed Paper Award.

The AES paper "Discussion of the Wavefront Sculpture Technology Criteria for Straight Line Source Arrays" is the winner of the AES 138th Convention Best Peer-Reviewed Paper Award.

The AES paper "Adjoint-Based Time Domain Sound Reinforcement" is featured in Rumsey, F. (2017): "Sound Reinforcement in the Open Air." In: J. Audio Eng. Soc., vol. 65, no. 12, pp. 1051 - 1055 (December).

The AES paper "Evaluation Strategies for the Optimization of Line Source Arrays" is featured in Rumsey, F. (2015): "Sound Reinforcement. Engineering and Technology." In: J. Audio Eng. Soc., vol. 63, no. 10, pp. 825 - 830 (October).

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