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Finite-precision design and implementation of all-pass polyphase networks for echo cancellation in sub-bands

机译:子带回波消除的全通多相网络的有限精度设计和实现

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All-pass polyphase networks (APN) are particularly attractive for acoustical echo cancellation (AEC) arranged in sub-bands. They provide lower inter-band aliasing, delay and computational complexity than their FIR counterparts. Moreover, APNs achieve higher echo return loss enhancement (ERLE) performance and faster convergence than full-band processing. In the paper, the finite precision implementation of APNs is addressed. A procedure is presented for re-optimising the all-pass coefficients of the prototype low-pass filter for finite precision operation. Robust finite precision implementation of a prototype low-pass filter is discussed. The results of a set of AEC experiments are reported with full and 16-bit precision implementation.
机译:全通多相网络(APN)对于布置在子带中的声学回声消除(AEC)尤其有吸引力。与FIR同类产品相比,它们具有更低的带间混叠,延迟和计算复杂度。此外,与全频带处理相比,APN具有更高的回声回波损耗增强(ERLE)性能和更快的收敛速度。在本文中,解决了APN的有限精度实现问题。提出了一种程序,用于重新优化原型低通滤波器的全通系数,以进行有限精度的操作。讨论了原型低通滤波器的鲁棒有限精度实现。报告了一组AEC实验的结果,并以完整和16位精度实现。

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