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A HARMONIC+NOISE CODER WITH IMPROVED TRANSIENT SPEECH PERFORMANCE

机译:具有改进的瞬态语音性能的谐波+噪声编码器

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This paper presents a 2.4 kbps harmonic+noise coder with improved transient speech performance. The coder operates in either the steady mode or the transient mode. A predictive phase model is proposed for the efficient encoding of phase information in steady mode. In this model, the normalized frequency deviations are used to minimize the phase prediction errors. A polynomial is fitted to the set of normalized frequency deviations and the polynomial coefficients are vector quantized in closed-loop. For the transient speech, the voiced part is modeled by the low-frequency harmonic components while the unvoiced part is modeled by an all-pole model. The transitional behavior is represented by the onset time and growth rate of each harmonic component. An analysis-by-synthesis procedure is proposed to determine the onset times and growth rates of the harmonic components in the time domain. The proposed coder retains the transitional characteristics of speech signal. Subjective testing shows that the speech quality of the proposed coder is sufficient for communication purposes.
机译:本文介绍了2.4 kbps谐波+噪声编码器,具有改进的瞬态语音性能。编码器以稳定模式或瞬态模式操作。提出了一种预测相位模型,用于稳定模式中的相位信息的有效编码。在该模型中,归一化频率偏差用于最小化相位预测误差。多项式适用于归一化频率偏差集,多项式系数在闭环中量化。对于瞬态语音,浊件部分由低频谐波分量建模,而无声部分由全极模型建模。过渡行为由每个谐波分量的开始时间和生长速率表示。提出了一种分析方法,以确定时域中谐波分量的发生时间和生长速率。所提出的编码器保留语音信号的过渡特性。主观测试表明,所提出的编码器的语音质量足以用于通信目的。

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