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Non-linear digital audio processor for dedicated loudspeaker systems

机译:专用扬声器系统的非线性数字音频处理器

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摘要

A non-linear loudspeaker model, which accurately reproduces the low frequency behavior, is presented. This description, derived from an extension of the well known Small-Thiele (1972) equations, requires far less computational time and memory space than generic non-linear structures. Moreover a noticeable further reduction of the number of operations and of the memory cells required has been achieved by means of a multirate architecture. Inversion of the proposed model allows digital prefiltering of the electrical signal in order to compensate for the non-idealities of the electroacoustic conversion. The above filter structure implemented on a digital signal processor, placed between the audio signal source and the power amplifier allows effective compensation of loudspeaker linear (both magnitude and phase) and non-linear distortion. Measurement results obtained with a commercial woofer are discussed.
机译:提出了一种非线性扬声器模型,可以准确地再现低频行为。该描述是从对Small-Thiele(1972)方程的扩展得出的,与一般的非线性结构相比,它需要的计算时间和存储空间要少得多。此外,借助于多速率架构已经实现了所需的操作数量和所需存储单元的显着进一步减少。所提出模型的反演允许对电信号进行数字预滤波,以补偿电声转换的非理想性。在音频信号源和功率放大器之间放置在数字信号处理器上的上述滤波器结构可以有效补偿扬声器的线性(幅度和相位)和非线性失真。讨论了使用商用低音扬声器获得的测量结果。

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