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Real-time implementation of an IIR acoustic echo canceller on ADSP21020

机译:IDSP声学回声消除器在ADSP21020上的实时实现

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A practical IIR (pole-zero) lattice adaptive acoustic echo canceller (AEC) for teleconferencing application is proposed. The proposed algorithm consists in two parts: a forward lattice and an inverse lattice. Collectively, they are referred to as the LATIN (lattice and inverse lattice) configuration. While the forward lattice is responsible for acoustic echo cancellation, the inverse lattice is employed in the double-talk (DT) mode only as to undo the distortion of the near-end speech brought about by forward lattice when suppressing the acoustic echo. Assuming M poles and M zeros for the proposed AEC, the complexity of the proposed algorithm is approximately twice the complexity of an M-tap FIR gradient lattice algorithm. Real-time experimentation conducted on an ADSP21020 floating-point DSP chip attests to the stability and fast convergence of proposed IIR algorithm.
机译:提出了一种适用于电话会议的实用IIR(零极点)晶格自适应声学回声消除器(AEC)。所提出的算法包括两部分:正向晶格和逆晶格。它们统称为LATIN(晶格和逆晶格)配置。尽管前向晶格负责消除声学回声,但在双向通话(DT)模式中采用逆晶格只是为了消除正向晶格在抑制声学回声时引起的近端语音失真。假设所提出的AEC具有M个极点和M个零,则所提出算法的复杂度大约是M抽头FIR梯度晶格算法的复杂度的两倍。在ADSP21020浮点DSP芯片上进行的实时实验证明了所提出的IIR算法的稳定性和快速收敛性。

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