A convolution model for computing the far-field directivity of a parametric loudspeaker array
Chuang Shi, Yoshinobu Kajikawa
Abstract
Chuang Shi, Yoshinobu Kajikawa
Abstract
This paper describes a method to compute the far-field directivity of a parametric loudspeaker array (PLA), whereby the steerable parametric loudspeaker can be implemented when phased array techniques are applied. The convolution of the product directivity and the Westervelt's directivity is suggested, substituting for the past practice of using the product directivity only. Computed directivity of a PLA using the proposed convolution model achieves significant improvement in agreement to measured directivity at a negligible computational cost.
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This paper describes a method to compute the far-field directivity of a parametric loudspeaker array (PLA), whereby the steerable parametric loudspeaker can be implemented when phased array techniques are applied. The convolution of the product directivity and the Westervelt's directivity is suggested, substituting for the past practice of using the product directivity only. Computed directivity of a PLA using the proposed convolution model achieves significant improvement in agreement to measured directivity at a negligible computational cost.
Key concepts: Directivity, Loudspeaker, Convolution (computer science), Acoustics, Parametric statistics, Parametric array, Computer science, Product (mathematics)