D. Djurek, I. Djurek, and A. Petosic, “Modeling of an Electrodynamic Loudspeaker Including Membrane Viscoelasticy,” in Proc. AES Convention 124, May 2008, Paper 7356. [Online]. Available: https://aes.org/publications/elibrary-page/?id=14486
Djurek D, Djurek I, Petosic A. Modeling of an Electrodynamic Loudspeaker Including Membrane Viscoelasticy. In: AES Convention 124. Audio Engineering Society; 2008. Paper 7356. Available from: https://aes.org/publications/elibrary-page/?id=14486
@inproceedings{Djurek2008_14486,
author = {Djurek, Danijel and Djurek, Ivan and Petosic, Antonio},
title = {{Modeling of an Electrodynamic Loudspeaker Including Membrane Viscoelasticy}},
booktitle = {AES Convention 124},
note = {Paper 7356},
year = {2008},
month = may,
publisher = {Audio Engineering Society},
url = {https://aes.org/publications/elibrary-page/?id=14486}
}
TY - CPAPER
TI - Modeling of an Electrodynamic Loudspeaker Including Membrane Viscoelasticy
AU - Djurek, Danijel
AU - Djurek, Ivan
AU - Petosic, Antonio
T2 - AES Convention 124
M1 - Paper 7356
PY - 2008
DA - 2008/05/06
UR - https://aes.org/publications/elibrary-page/?id=14486
PB - Audio Engineering Society
LA - en
AB - The model is proposed based upon viscoelastic properties of the loudspeaker membrane, and properties considered include stress-strain hysteresis, creeping effect, initial stress effect and appearance of the temperature fluctuations on the membrane surface. The creeping displacement response dependent on the step-like excitation current has been measured on different loudspeaker configurations, and listed effects were analyzed in terms of the N-order Bennewitz-Rötger differential equation, commonly used for description of the system of vibrating viscoelastic body. The main parameter in this equation is inverse stress parameter which connects friction and restoring term in the loudspeaker vibrating system.
ER -