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  4. Design of active Multiple-degrees-of-freedom electroacoustic resonators for use as broadband sound absorbers
 
conference paper

Design of active Multiple-degrees-of-freedom electroacoustic resonators for use as broadband sound absorbers

Lissek, Hervé  
•
Rivet, Etienne  
•
Karkar, Sami
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2017
Proceedings of MEDYNA 2017
MEDYNA 2017: 2nd Euro-Mediterranean Conference on Structural Dynamics and Vibroacoustics

We present a novel control method achieving stable multiple-degrees-of-freedom electroacoustic resonators. Such broadband absorbers, composed of a feedback-controlled electrodynamic loudspeaker, have many practical applications to real-world acoustic engineering problems, such as low-frequency industrial noise reduction in the range of [20 - 200 Hz]. The proposed control architecture combines a conventional microphone-based feedback control loop and a current-driven direct acoustic impedance control scheme, proven to perform optimally in recently reported acoustic impedance synthesis methods. This paper presents a methodology for designing the transfer function to be implemented in the controller, after specifying a target multiple-degree-of-freedom acoustic resonator impedance. Numerical simulations presents the expected acoustic performances, confirmed by experimental assessments in an impedance tube.

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Lissek_MDOF acoustic resonators.pdf

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http://purl.org/coar/version/c_970fb48d4fbd8a85

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170425_MEDYNA_Lissek.pdf

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