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首页> 外文期刊>IEEE Transactions on Speech and Audio Proceessing >Inverse structure for active noise control and combined activenoise control/sound reproduction systems
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Inverse structure for active noise control and combined activenoise control/sound reproduction systems

机译:主动噪声控制和组合主动噪声控制/声音再现系统的逆结构

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In this paper, a simple inverse structure for multichannel active noise control (ANC) is introduced, based on the use of noncausal models of the (pseudo-)inverse plant between the error sensors (typically microphones in ANC systems) and the actuators (typically loudspeakers). This structure, combined with adaptive FIR filters and filtered-x LMS-based algorithms, can produce both a reduction of the computational load and an increase of the convergence speed, compared to the multichannel filtered-x LMS algorithm or its fast exact realizations. Also, for systems combining active sound cancellation and exact sound reproduction (such as headphones combining both ANC and binaural audio with equalization), the proposed inverse structure can further reduce the computational load compared to common approaches. Simulations using exact and noisy models of a realistic acoustic plant and an inverse plant were performed to verify the performance of the proposed structure
机译:本文基于误差传感器(通常为ANC系统中的麦克风)与执行器(通常为ANC)之间的(伪)逆工厂的非因果模型的使用,介绍了一种用于多通道有源噪声控制(ANC)的简单逆结构。扬声器)。与多通道滤波X LMS算法或其快速精确实现相比,这种结构结合了自适应FIR滤波器和基于滤波X LMS的算法,既可以减少计算量,又可以提高收敛速度。同样,对于结合了主动声音消除和精确声音再现的系统(例如将ANC和双耳音频同时均衡化的耳机),与常规方法相比,所提出的逆结构可以进一步减少计算量。使用真实的声学工厂和逆工厂的精确模型和噪声模型进行了仿真,以验证所提出结构的性能

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