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    • 8. 发明授权
    • Encoder-assisted frame loss concealment techniques for audio coding
    • 用于音频编码的编码器辅助帧丢失隐藏技术
    • US08620644B2
    • 2013-12-31
    • US11431733
    • 2006-05-10
    • Sang-Uk RyuEddie L. T. ChoySamir Kumar Gupta
    • Sang-Uk RyuEddie L. T. ChoySamir Kumar Gupta
    • G10L19/00
    • G10L19/005G10L19/02
    • Encoder-assisted frame loss concealment (FLC) techniques for decoding audio signals are described. A decoder may discard an erroneous frame of an audio signal and may implement the encoder-assisted FLC techniques in order to accurately conceal the discarded frame based on neighboring frames and side-information transmitted from the encoder. The encoder-assisted FLC techniques include estimating magnitudes of frequency-domain data for the frame based on frequency-domain data of neighboring frames, and estimating signs of the frequency-domain data based on a subset of signs transmitted from the encoder as side-information. Frequency-domain data for a frame of an audio signal includes tonal components and noise components. Signs estimated from a random signal may be substantially accurate for the noise components of the frequency-domain data. However, to achieve highly accurate sign estimation for the tonal components, the encoder transmits signs for the tonal components of the frequency-domain data as side-information.
    • 描述了用于解码音频信号的编码器辅助帧丢失隐藏(FLC)技术。 解码器可以丢弃音频信号的错误帧,并且可以实现编码器辅助的FLC技术,以便基于相邻帧和从编码器发送的侧信息来准确地隐藏丢弃的帧。 编码器辅助FLC技术包括基于相邻帧的频域数据估计帧的频域数据的幅度,并且基于从编码器发送的符号子集来估计频域数据的符号作为侧信息 。 音频信号的帧的频域数据包括音调分量和噪声分量。 从随机信号估计的符号对于频域数据的噪声分量可能是基本准确的。 然而,为了实现对音调分量的高度准确的符号估计,编码器将用于频域数据的音调分量的符号作为侧信息发送。
    • 9. 发明授权
    • Systems, methods, and apparatus for context replacement by audio level
    • 通过音频级别进行上下文替换的系统,方法和装置
    • US08554551B2
    • 2013-10-08
    • US12129483
    • 2008-05-29
    • Nagendra NagarajaKhaled El-MalehEddie L. T. Choy
    • Nagendra NagarajaKhaled El-MalehEddie L. T. Choy
    • G10L21/00
    • G10L21/02G10L19/012G10L21/0208G10L21/0272
    • Configurations disclosed herein include systems, methods, and apparatus that may be applied in a voice communications and/or storage application to remove, enhance, and/or replace the existing context. Enhancing the context of a voice communication may first include suppressing an existing context component from the digital audio signal to obtain a context suppressed signal. This signal may then be mixed with a new context signal to create a context enhanced signal, which may then be encoded before transmission. When this new context enhanced signal includes a speech component, it may be encoded and transmitted at a particular bit rate. When the context enhanced signal does not include a speech component, it may also be encoded at a similar bit rate. However, depending on the state of a process control signal, portions of a digital audio signal that lack a speech component may also be transmitted at a lower bit rate.
    • 本文公开的配置包括可以应用于语音通信和/或存储应用中以去除,增强和/或替代现有上下文的系统,方法和装置。 增强语音通信的上下文可以首先包括从数字音频信号中抑制现有上下文成分以获得上下文抑制信号。 然后可以将该信号与新的上下文信号混合以产生上下文增强信号,然后可以在传输之前进行编码。 当该新的上下文增强信号包括一个语音分量时,它可以被编码并以特定比特率发送。 当上下文增强信号不包括语音分量时,也可以以相似的比特率进行编码。 然而,根据处理控制信号的状态,也可以以较低的比特率发送缺少语音分量的数字音频信号的部分。