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Dataset results
12 results for “Loudspeaker”
Head-related impulse responses of a loudspeaker array
<p>Head-related impulse responses measured with a KEMAR dummy head of a loudspeaker array consisting of 13 loudspeakers. The dummy head was placed at three different positions, which allows to combine the measurements to an loudspeaker array consisting of 35 loudspeakers.</p> <p>The measurement equipment was exactly the same as in http://dx.doi.org/10.5281/zenodo.55418</p>
Binaural room impulse responses recorded with KEMAR of a 19-channel linear loudspeaker array
<p>BRIRs for 19 different loudspeakers placed in room Calypso at the Telefunken-building of TU Berlin were measured. The room is a studio listening room. The 19 loudspeakers constituted a linear loudspeaker array with a inter-loudspeaker distance of roughly 15cm. The measurement was done with the KEMAR (type 45BA) with the corresponding large ears (type KB0065 and KB0066) and Fostex PM0.4 loudspeakers. The dummy head was rotated from −90° to 90° in 1° steps. The measurement was repeated with the head wearing AKG K601 open headphones.</p>
Datasets for the paper "A linear parameter-varying modelling approach for dielectric elastomer loudspeakers"
<p>This upload contains the numerical datasets used for the numerical plots reported in the paper "A linear parameter-varying modelling approach for dielectric elastomer loudspeakers" by G. Moretti et al., In <em>IFAC-PapersOnLine Volume 55, Issue 20, 2022</em> (<a href="https://doi.org/10.1016/j.ifacol.2022.09.150">https://doi.org/10.1016/j.ifacol.2022.09.150</a>).</p> <p>Please refer to the readme file for information on the files structure and content. </p>
Datasets for the paper "Model-based parameter analysis of dielectric elastomer loudspeakers"
<p>This upload contains the numerical datasets used for the numerical plots reported in the paper "Model-based parameter analysis of dielectric elastomer loudspeakers" by G. Moretti et al., In <em>2022 IEEE/ASME International Conference on Advanced Intelligent Mechatronics (AIM)</em> (<a href="https://doi.org/10.1109/AIM52237.2022.9863404">10.1109/AIM52237.2022.9863404</a>).</p> <p>Please refer to the readme file for information on the files structure and content. </p>
Binaural room scanning files for a 56-channel circular loudspeaker array
<p>Binaural room scanning (BRS) files for the simulation of a 56-channel circular loudspeaker array with a diameter of 3m. The loudspeaker array setup is also suited to reproduce stereo or surround recordings.</p> <p>The BRS files allow for a dynamic binaural simulation of the actual loudspeaker array using the SoundScape Renderer [1]. With this you can listen to binaural simulations of stereo, surround, or even wave field synthesis (WFS) productions. For example, you can find music productions that can be used with the 56-channel array at [2].</p> <p>[1] http://spatialaudio.net/ssr/</p> <p>[2] http://dx.doi.org/10.14279/depositonce-5173</p>
Head-related impulse responses of a loudspeaker array
<p>Head-related impulse responses measured with a KEMAR dummy head of a loudspeaker array consisting of 13 loudspeakers. The dummy head was placed at three different positions, which allows to combine the measurements to an loudspeaker array consisting of 35 loudspeakers.</p> <p>The measurement equipment was exactly the same as in http://dx.doi.org/10.5281/zenodo.55418</p>
Binaural recordings of a real and binaural simulated circular loudspeaker array
<p>A KEMAR dummy head did binaural recordings of a noise signal played back over a circular loudspeaker array. The loudspeaker array had a diameter of 3m and consists of 56 loudspeakers. The real loudspeakers or a binaural simulation of them were used. For the latter a BRIR dataset had been recorded before with another dummy head. The KEMAR dummy head was wearing headphones all the time in order to allow for a direct comparison between the simulation and real setup.</p> <p>This dataset is used to create Fig. 4.9 in H. Wierstorf, Perceptual Assessment of of Sound Field Synthesis, PhD dissertation, TU Berlin, 2014. See also https://github.com/hagenw/phd-thesis/tree/master/04_binaural_synthesis/fig4_09</p>
6 DoF Directional Room Impulse Response Dataset Measured over a Dense Loudspeaker Grid (6DRIR-DL)
<p>The 6DoF directional RIR dataset (aka <strong>6DRIR-DL</strong>) includes room impulse responses (RIRs) measured by <strong>nine</strong> spherical microphone arrays (SMAs; Zylia ZM-1S) distributed in a semi-cuboid room. <strong>6DRIR-DL</strong> is specialized by its massive loudspeaker positions (<strong>392</strong> locations), which were incorporated for the 6DOF source localization task. The inter-element spacing between loudspeakers is only 8 cm, so the dataset can be utilized to validate a sound source localization algorithm for closely positioned multiple sound sources.</p>
Understanding Users' Choices and Constraints when Positioning Loudspeakers in Living Rooms
<p>Dataset pertaining to an experiment concerning positions of ad-hoc loudspeakers and mobile phones in domestic living rooms.</p> <p>This forms part of the PhD research of Craig Cieciura. This was experiment-based research to determine how to render object-based audio in the domestic environment using ad-hoc, audio-capable devices.</p> <p><strong>References</strong></p> <p>AES148 (2020): Cieciura, C., Mason, R., Coleman, P. and Francombe, J. 2020. Understanding users’ choices and constraints when positioning loudspeakers in living rooms, Audio Engineering Society Preprint, 148th Convention, Engineering Brief (number tbc).</p>
Loudspeaker array recordings in small anechoic chamber with two reflectors
<p>No description provided.</p>
Supplementary material - Blind comparison of binaural auralisations to a real loudspeaker in an audiovisual virtual classroom scenario: Effect of room acoustic simulation, HRTF dataset and head worn devices on rated room-acoustical attributes
<p>Additional Material for the paper "Blind comparison of binaural auralisations to a real loudspeaker in an audiovisual virtual classroom scenario: Effect of room acoustic simulation, HRTF dataset and head worn devices on rated room-acoustical attributes".</p> <p> </p> <p>This work is funded by the German Research Foundation (Deutsche Forschungsgemeinschaft, DFG) under the project ID 422686707, SPP2236 – AUDICTIVE – Auditory Cognition in Interactive Virtual Environments</p>
M7: Comparing 8-inch sized Loudspeakers for a 3D Audio Production Lab
<p>This data set includes a report on the loudspeaker selection process for the Ligeti Zentrum's 3D Audio Production Lab. It also contains the developed comparison framework, as well as simulation and measurement data.</p>
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