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Posterior probabilistic modeling for inter-channel phase and time difference estimation in audio signals

机译:音频信号通道间相位和时差估计的后概率模型

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A method is proposed for the estimation of the time difference of arrival (TDOA) from a sound source to a pair of microphones. Given noisy observations of the source, the magnitude spectrum of the source is first estimated via smoothing across time frames. Then, a probability density function (PDF) for the phase conditioned upon the magnitude is constructed based on the signal-to-noise ratio (SNR) at every frequency. Subsequently, the conditional PDF for the inter-channel phase difference (IPD) is calculated, and the computation can be accelerated via Gaussian curve fitting. Finally, by combining the information from all frequencies, the TDOA can be estimated in the maximum a posteriori (MAP) sense. Results from "anechoic" simulation showed that, at various SNRs (0 to 40 dB), the proposed method consistently produced more accurate estimation than the well known GCC-PHAT [1] and a recent method that was also based on IPD modeling [2]. Experiments conducted in an office environment are also reported, using speech and footsteps as test materials.
机译:提出了一种方法,用于估计从声源到一对麦克风的到达(TDOA)的时间差。给出对源的噪声观察,首先通过在时间框架上平滑估计源的幅度谱。然后,基于在每个频率处的信噪比(SNR)构建幅度上的相位调节的概率密度函数(PDF)。随后,计算用于间通道间相位差(IPD)的条件PDF,并且计算可以通过高斯曲线配件加速计算。最后,通过组合来自所有频率的信息,可以在最大的后验(地图)意义上估计TDOA。 “AneChico”模拟结果表明,在各种SNR(0到40dB),所提出的方法始终如一地产生比众所周知的GCC-Phat [1]和最近的方法,以及还基于IPD建模的方法[2 ]。还报告了在办公环境中进行的实验,使用言语和脚步声作为测试材料。

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