직접 방사형 스피커의 비선형 고조파 왜곡 보상 제어기의 설계Controller design for compensation of nonlinear harmonic distortion in direct-radiator loudspeakers

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The electrodynamic loudspeakers should have a wide dynamic range to reproduce various sound levels. When the input signal is small, the radiated sound from the loudspeaker is not so much distorted. However, for large input signal with low frequency component the radiated sound is significantly distorted due to the nonlinearities of the loudspeaker. The suspension, damping, and magnetic flux of loudspeaker are the main sources of the nonlinearity. Such electromechanical parameters related to harmonic distortion have been represented by a polynomial model for diaphragm displacement, while each of the polynomial coefficient is evaluated by using the principle of harmonic balance experimentally. Based on the polynomial model, we designed a compensator for nonlinear harmonic distortion of direct radiator loudspeaker. Than observer is used to estimate the displacement of the loudspeaker diaphragm, which is rather difficult to measure directly in the conventional setting. The usefulness of the designed compensator is demonstrated by numerical simulations. Simulation results show about 30db decrease at the second and third higher harmonic distortions. We carry out an experiment on speaker to verify designed controller and nonlinear observer.
Publisher
제어로봇시스템학회
Issue Date
1996
Language
KOR
Citation

제어로봇시스템학회 1996년도 한국자동제어학술회의, pp.399 - 402

URI
http://hdl.handle.net/10203/124929
Appears in Collection
ME-Conference Papers(학술회의논문)
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