Releases: AppliedAcousticsChalmers/ReTiSAR
Latest (v2023.05.29)
Full Changelog: v2021.07.26...v2023.05.29
Frozen code base for TASLP 2021 publication
H. Helmholz, D. Lou Alon, S. V. Amengual Garí, and J. Ahrens, “Effects of Additive Noise in Binaural Rendering of Spherical Microphone Array Signals,” IEEE/ACM Trans. Audio, Speech, Lang. Process., vol. 29, pp. 3642–3653, 2021, doi: 10.1109/TASLP.2021.3129359.
The code, data structures and included resources are directly based on the continuously developed master branch around the time of this publication.
The procedures utilized to capture rendered ear signals, the resulting raw data, the scripts realizing the Composite Loudness Levels analysis, the intermediate ILD, CLL and CLLgd plots, as well as the scripts to generate the respective result plots are available at:
http://doi.org/10.5281/zenodo.3842305
Frozen code base for FA 2020 publication
H. Helmholz, D. Lou Alon, S. V. Amengual Garí, and J. Ahrens, “Instrumental Evaluation of Sensor Self-Noise in Binaural Rendering of Spherical Microphone Array Signals,” in Forum Acusticum, 2020, pp. 1349–1356, doi: 10.48465/fa.2020.0074.
The code, data structures and included resources are directly based on the continuously developed master branch around the time of this publication.
The methods for the instrumental SNR evaluation, gathered results and according visualizations, as well as mh acoustics Eigenmike 32 self-noise measurement scripts, recorded results and according visualizations utilized in the publication are available at:
http://doi.org/10.5281/zenodo.3711626
Frozen code base for ICASSP 2020 publication
H. Helmholz, J. Ahrens, D. Lou Alon, S. V. Amengual Garí, and R. Mehra, “Evaluation of Sensor Self-Noise In Binaural Rendering of Spherical Microphone Array Signals,” in International Conference on Acoustics, Speech and Signal Processing (ICASSP), 2020, pp. 161–165, doi: 10.1109/ICASSP40776.2020.9054434.
Note that this is an early state of the publication, where the code base, data structures and included resources could be very different from current releases. Accordingly the original project structure is provided here for reference.
The methods for the instrumental evaluation, gathered results and according visualizations utilized in the publication are available at:
http://doi.org/10.5281/zenodo.3661422
Frozen code base for DAGA 2019 publication
H. Helmholz, C. Andersson, and J. Ahrens, “Real-Time Implementation of Binaural Rendering of High-Order Spherical Microphone Array Signals,” in Fortschritte der Akustik -- DAGA 2019, 2019, pp. 1462–1465.
Note that this is an early state of the publication, where the code base, data structures and included resources could be very different from current releases. Accordingly the original project structure is provided here for reference.
The methods for the instrumental evaluation, gathered results and according visualizations utilized in the publication are included here.