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Subband adaptive filtering for acoustic echo control using allpass polyphase IIR filterbanks

机译:使用全通多相IIR滤波器组的用于声回波控制的子带自适应滤波

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摘要

Adaptive filtering in subbands is an attractive alternative to full-band schemes in many applications because of the potential for faster convergence and lower computational cost. However, the analysis of a signal into a subband representation and the synthesis back into its original full-band form carries three main penalties. These are that (1) the subsampling process often introduces aliasing, (2) the subband analysis and synthesis processes carry a computational overhead, thereby reducing the gain in efficiency, and (3) the subband analysis and synthesis processes introduce delay into the signal path. A subband scheme is presented that aims to minimize these penalties, thereby allowing the potential advantages of the subband approach to be more fully realized. The scheme is based on infinite impulse response (IIR) filterbanks, formed from allpass polyphase filters, which exhibit very high quality filtering compared to typical finite impulse response (FIR) implementations, have relatively low complexity, introduce a limited degree of phase distortion and have low delay. The scheme, in conjunction with normalized least mean squares (NLMS) adaptive filters, is tested in an acoustic echo control application and shown to give better convergence, lower delay, and lower computational cost than a comparable FIR subband scheme.
机译:在许多应用中,子带中的自适应滤波是全频带方案的一种有吸引力的替代方法,因为它有可能实现更快的收敛速度和更低的计算成本。但是,将信号分析成子带表示形式并将其综合回原来的全带形式会带来三个主要惩罚。这些是:(1)子采样过程经常引入混叠;(2)子带分析和合成过程会带来计算开销,从而降低效率;(3)子带分析和合成过程将延迟引入信号路径。提出了旨在最小化这些惩罚的子带方案,从而允许更充分地实现子带方法的潜在优势。该方案基于由全通多相滤波器形成的无限冲激响应(IIR)滤波器组,与典型的有限冲激响应(FIR)实现相比,该滤波器组显示出非常高的滤波质量,具有较低的复杂度,有限的相位失真程度以及低延迟。该方案与归一化最小均方(NLMS)自适应滤波器相结合,在声学回声控制应用中进行了测试,结果表明,与同类FIR子带方案相比,该方案具有更好的收敛性,更低的延迟和更低的计算成本。

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