JOURNAL ARTICLE

Active Noise Control Using High-Directional Parametric Loudspeaker : Numerical Study on Radiated and Interfered Field(Mechanical Systems)

Toshihiko KOMATSUZAKIYoshio IWATA

Year: 2010 Journal:   TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series C Vol: 76 (761)Pages: 177-184   Publisher: Japan Society Mechanical Engineers

Abstract

Recent development of high-directional loudspeaker based on parametric array has allowed sound transmission within a narrow range of acoustic space like 'spotlight'. Parametric array utilizes the high directive characteristics of ultrasonic sound, where the embedded difference component of two ultrasonic carrier waves is expanded as audible sound. This peculiar characteristic can be implemented as one measure for improving active noise control scheme controlling acoustic field locally without adversely influencing vicinal space. In the present study, a new approach for active control of sound in free space is developed using high directional parametric loudspeaker as a control source. A numerical model of parametric array source is studied, and the calculated sound fields are compared with the measured fields formed by a commercial parametric loudspeaker. Furthermore, an approach for the active control of sound in free space is investigated, and the results are evaluated mainly from the aspect of the interfered sound field. It is known that the suggested ANC system can mitigate sound locally but cause less influence on sound field in circumferential space.

Keywords:
Loudspeaker Directional sound Parametric array Acoustics Parametric statistics Sound transmission class Active noise control Sound quality Noise (video) Room acoustics Noise control Computer science Sound (geography) Physics Noise reduction Reverberation Mathematics

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4
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0.43
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12
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0.69
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Citation History

Topics

Acoustic Wave Phenomena Research
Physical Sciences →  Engineering →  Biomedical Engineering
Advanced Adaptive Filtering Techniques
Physical Sciences →  Engineering →  Computational Mechanics
Speech and Audio Processing
Physical Sciences →  Computer Science →  Signal Processing

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