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    • 1. 发明申请
    • Method and Apparatus to Facilitate Determining Signal Bounding Frequencies
    • 促进确定信号边界频率的方法和装置
    • US20100049342A1
    • 2010-02-25
    • US12195837
    • 2008-08-21
    • Tenkasi V. RamabadranMark A. Jasiuk
    • Tenkasi V. RamabadranMark A. Jasiuk
    • G06F17/00
    • G10L21/0388
    • A signal processing platform (300) presents (101) a signal to be processed and identifies (102) signal portions with specific characteristics that are used (103) to automatically determine at least one bounding frequency that can be used to facilitate bandwidth extension for the signal. Identifying these signal portions can comprise identifying signal portions that exhibit at least a predetermined level of energy. The step of determining the bounding frequency can comprise computing a magnitude spectrum for each of the identified signal portions that can be used to determine a corresponding measure of flatness within a pass band as pertains to a corresponding normalized signal portion to thereby provide corresponding vetted signal portions. Determining the bounding frequency can then comprise accumulating the magnitude spectrum for these vetted signal portions and using the resultant accumulation to estimate a corresponding signal envelope. This signal envelope can then be used to determine the at least one bounding frequency.
    • 信号处理平台(300)呈现(101)要处理的信号,并识别(102)具有特定特征的信号部分(103),以自动确定可用于促进带宽扩展的至少一个边界频率 信号。 识别这些信号部分可以包括识别表现出至少预定水平能量的信号部分。 确定边界频率的步骤可以包括计算每个识别的信号部分的幅度谱,所述信号部分可被用于确定与通过频带内的对应的对应的测量平均度属于对应的归一化信号部分,从而提供对应的被检测的信号部分 。 确定边界频率可以包括累积这些被检测的信号部分的幅度谱,并且使用所得到的累积来估计相应的信号包络。 然后可以使用该信号包络来确定至少一个边界频率。
    • 7. 发明授权
    • Method and apparatus to facilitate determining signal bounding frequencies
    • 便于确定信号界限频率的方法和装置
    • US08463412B2
    • 2013-06-11
    • US12195837
    • 2008-08-21
    • Tenkasi V. RamabadranMark A. Jasiuk
    • Tenkasi V. RamabadranMark A. Jasiuk
    • G06F17/00
    • G10L21/0388
    • A signal processing platform (300) presents (101) a signal to be processed and identifies (102) signal portions with specific characteristics that are used (103) to automatically determine at least one bounding frequency that can be used to facilitate bandwidth extension for the signal. Identifying these signal portions can comprise identifying signal portions that exhibit at least a predetermined level of energy. The step of determining the bounding frequency can comprise computing a magnitude spectrum for each of the identified signal portions that can be used to determine a corresponding measure of flatness within a pass band as pertains to a corresponding normalized signal portion to thereby provide corresponding vetted signal portions. Determining the bounding frequency can then comprise accumulating the magnitude spectrum for these vetted signal portions and using the resultant accumulation to estimate a corresponding signal envelope. This signal envelope can then be used to determine the at least one bounding frequency.
    • 信号处理平台(300)呈现(101)要处理的信号,并识别(102)具有特定特征的信号部分(103),以自动确定可用于促进带宽扩展的至少一个边界频率 信号。 识别这些信号部分可以包括识别表现出至少预定水平能量的信号部分。 确定边界频率的步骤可以包括计算每个识别的信号部分的幅度谱,所述信号部分可被用于确定与通过频带内的对应的对应的测量平均度属于对应的归一化信号部分,从而提供对应的被检测的信号部分 。 确定边界频率可以包括累积这些被检测的信号部分的幅度谱,并且使用所得到的累积来估计相应的信号包络。 然后可以使用该信号包络来确定至少一个边界频率。
    • 10. 发明授权
    • Method and apparatus for speech coding
    • 用于语音编码的方法和装置
    • US07792670B2
    • 2010-09-07
    • US10964861
    • 2004-10-14
    • Mark A. JasiukTenkasi V. RamabadranUdar MittalJames P. AshleyMichael J. McLaughlin
    • Mark A. JasiukTenkasi V. RamabadranUdar MittalJames P. AshleyMichael J. McLaughlin
    • G10L19/00
    • G10L19/09
    • A method and apparatus for prediction in a speech-coding system is provided herein. The method of a 1st order long-term predictor (LTP) filter, using a sub-sample resolution delay, is extended to a multi-tap LTP filter, or, viewed from another vantage point, the conventional integer-sample resolution multi-tap LTP filter is extended to use sub-sample resolution delay. This novel formulation of a multi-tap LTP filter offers a number of advantages over the prior-art LTP filter configurations. Particularly, defining the lag with sub-sample resolution makes it possible to explicitly model the delay values that have a fractional component, within the limits of resolution of the over-sampling factor used by the interpolation filter. The coefficients of such a multi-tap LTP filter are thus largely freed from modeling the effect of delays that have a fractional component. Consequently their main function is to maximize the prediction gain of the LTP filter via modeling the degree of periodicity that is present and by imposing spectral shaping.
    • 本发明提供了语音编码系统中的预测方法和装置。 使用子样本分辨率延迟的1阶长期预测器(LTP)滤波器的方法被扩展到多抽头LTP滤波器,或者从另一个有利位置观察传统的整数样本分辨率多抽头 LTP过滤器扩展到使用子样本分辨率延迟。 多抽头LTP滤波器的这种新颖配方提供了优于现有技术的LTP滤波器配置的许多优点。 特别地,使用子样本分辨率定义滞后使得可以在内插滤波器使用的过采样因子的分辨率的限度内明确地建模具有分数分量的延迟值。 因此,这种多抽头LTP滤波器的系数在很大程度上不会对具有分数分量的延迟的影响进行建模。 因此,它们的主要功能是通过建模存在的周期程度和施加频谱整形来最大化LTP滤波器的预测增益。