Outputs of the project
Scientific publications
2438974
JABCDCJU
1
ieee
50
date
1
title
285
https://salute-h2020.epfl.ch/wp-content/plugins/zotpress/
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[1]
M. Volery, X. Guo, and H. Lissek, "Robust direct acoustic impedance control using two microphones for mixed feedforward-feedback controller," Acta Acust., vol. 7, p. 2, 2023, doi: 10.1051/aacus/2022058.
[1]
K. Billon et al., "2D Active Liner Experimental Results in Acoustic Flow Duct Facility," in ASME 2022 Conference on Smart Materials, Adaptive Structures and Intelligent Systems, Dearborn, Michigan, USA: American Society of Mechanical Engineers, Sep. 2022, p. V001T03A001. doi: 10.1115/SMASIS2022-88324.
[1]
E. De Bono et al., "Effect of time delay on the impedance control of a pressure-based, current-driven Electroacoustic Absorber," Journal of Sound and Vibration, vol. 537, p. 117201, 2022, doi: 10.1016/j.jsv.2022.117201.
[1]
K. Billon et al., "In flow acoustic characterisation of a 2D active liner with local and non local strategies.," Applied Acoustics, vol. 191, p. 108655, 2022, doi: 10.1016/j.apacoust.2022.108655.
[1]
K. Billon et al., "Experimental assessment of an active (acoustic) liner prototype in an acoustic flow duct facility," in Health Monitoring of Structural and Biological Systems XV, P. Fromme and Z. Su, Eds., Online Only, United States: SPIE, Mar. 2021, p. 84. doi: 10.1117/12.2583099.
[1]
K. Billon et al., "Numerical Optimization of Liner Impedance in Acoustic Duct," in ASME 2020 Conference on Smart Materials, Adaptive Structures and Intelligent Systems, Virtual, Online: American Society of Mechanical Engineers, Sep. 2020, p. V001T02A009. doi: 10.1115/SMASIS2020-2435.
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https://salute-h2020.epfl.ch/wp-content/plugins/zotpress/
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[1]
E. De Bono et al., "Advection Boundary Law for sound transmission attenuation of plane and spinning guided modes," in Proceedings of the 10th Convention of the European Acoustics Association Forum Acusticum 2023, Turin, Italy: European Acoustics Association, Jan. 2024, pp. 6065–6069. doi: 10.61782/fa.2023.0573.
[1]
M. Volery and H. Lissek, "Stability limits of an electroacoustic absorber," in Proceedings of the 10th Convention of the European Acoustics Association Forum Acusticum 2023, Turin, Italy: European Acoustics Association, Jan. 2024, pp. 3651–3654. doi: 10.61782/fa.2023.0703.
[1]
É. Salze et al., "Electro-active acoustic liner for the reduction of turbofan noise," in Proceedings of the 10th Convention of the European Acoustics Association Forum Acusticum 2023, Turin, Italy: European Acoustics Association, Jan. 2024, pp. 6057–6060. doi: 10.61782/fa.2023.0558.
[1]
K. Billon et al., "Smart acoustic lining for UHBR technologies engine: from the design of an electroacoustic metasurface to experimental characterization under flow," in Active and Passive Smart Structures and Integrated Systems XVII, S. Tol, M. A. Nouh, S. Shahab, J. Yang, and G. Huang, Eds., Long Beach, United States: SPIE, Apr. 2023, p. 72. doi: 10.1117/12.2658519.
[1]
M. Volery and H. Lissek, "Achieving direct acoustic impedance control with only two microphones," p. 2 pages, 2020, doi: 10.48465/FA.2020.0586.
[1]
H. Lissek et al., "(Towards an) Active SDOF Electroacoustic Metamaterial for use as an Adjustable Acoustic Liner for Engine Noise Reduction," presented at the CEAS-ASC 2019 Workshop : New materials for applications in aeroacoustics, University Roma III, Roma, Italy, Sep. 26, 2019. Accessed: Feb. 16, 2022. [Online]. Available:
[1]
H. Lissek, "Electroacoustic Metamaterials: towards effective sound waves manipulation in the subwavelength regime - LMA - Laboratoire de Mécanique et d'Acoustique," presented at the Seminar in Acoustics, LMA - Marseille, France, Jun. 11, 2019. Accessed: Feb. 04, 2020. [Online]. Available:
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