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Research on a novel audio beam loudspeaker based digital signal processor

机译:基于新型声束扬声器的数字信号处理器的研究

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A novel audio beam loudspeaker based on digital signal processor (DSP) was fabricated by utilizing the nonlinear propagation effects of ultrasonic in the air to generate audible sound with high directivity and controllable space distribution. In terms of the notable Khokhlov-Zabolotskaya-Kuznetsov (KZK) equation, the modulation equation of how to process the audio signal is deduced. Moreover, the ultrasonic transducer array is explored to generate audible sound with high directivity. It is proven that increasing the quantity of transducers in the ultrasonic transducer array to generate audible sound with high directivity and suppress the amplitude of sidelobes is feasible when it is impossible to make the distance between transducers less than or equal to a half of the wavelength of ultrasonic.
机译:利用超声在空气中的非线性传播效应,产生具有高方向性和可控空间分布的可听声音,从而制造出一种基于数字信号处理器(DSP)的新型声束扬声器。根据著名的Khokhlov-Zabolotskaya-Kuznetsov(KZK)方程,推导了如何处理音频信号的调制方程。此外,探索了超声换能器阵列以产生具有高方向性的可听声音。事实证明,当不可能使换能器之间的距离小于或等于波长的一半时,增加超声换能器阵列中换能器的数量以产生具有高方向性的可听声音并抑制旁瓣的幅度是可行的。超声波。

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