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    • 7. 发明申请
    • Spectrum Flatness Control for Bandwidth Extension
    • 带宽扩展的频谱平坦度控制
    • US20150255073A1
    • 2015-09-10
    • US14719693
    • 2015-05-22
    • HUAWEI TECHNOLOGIES CO.,LTD.
    • Yang Gao
    • G10L19/002G10L19/022
    • G10L19/002G10L19/022G10L19/24G10L19/26G10L21/038G10L21/0388G10L25/18
    • In accordance with an embodiment, a method of decoding an encoded audio bitstream at a decoder includes receiving the audio bitstream, decoding a low band bitstream of the audio bitstream to get low band coefficients in a frequency domain, and copying a plurality of the low band coefficients to a high frequency band location to generate high band coefficients. The method further includes processing the high band coefficients to form processed high band coefficients. Processing includes modifying an energy envelope of the high band coefficients by multiplying modification gains to flatten or smooth the high band coefficients, and applying a received spectral envelope decoded from the received audio bitstream to the high band coefficients. The low band coefficients and the processed high band coefficients are then inverse-transformed to the time domain to obtain a time domain output signal.
    • 根据实施例,在解码器处解码编码音频比特流的方法包括接收音频比特流,解码音频比特流的低频带比特流以获得频域中的低频带系数,以及复制多个低频带 系数到高频带位置以产生高频带系数。 该方法还包括处理高频带系数以形成经处理的高频带系数。 处理包括通过将修改增益相乘以对高频带系数进行平坦化或平滑来修改高频带系数的能量包络,以及将从接收到的音频比特流解码的接收频谱包络应用于高频带系数。 然后将低频带系数和经处理的高频带系数逆变换到时域以获得时域输出信号。
    • 8. 发明申请
    • Adaptive Bandwidth Extension and Apparatus for the Same
    • 适用带宽扩展及其设备
    • US20150073784A1
    • 2015-03-12
    • US14478839
    • 2014-09-05
    • Huawei Technologies Co., Ltd.
    • Yang Gao
    • G10L19/12
    • G10L19/22G10L19/0204G10L19/08G10L19/12G10L19/167G10L19/265G10L21/038
    • In one embodiment of the present invention, a method of decoding an encoded audio bitstream and generating frequency bandwidth extension includes decoding the audio bitstream to produce a decoded low band audio signal and generate a low band excitation spectrum corresponding to a low frequency band. A sub-band area is selected from within the low frequency band using a parameter which indicates energy information of a spectral envelope of the decoded low band audio signal. A high band excitation spectrum is generated for a high frequency band by copying a sub-band excitation spectrum from the selected sub-band area to a high sub-band area corresponding to the high frequency band. Using the generated high band excitation spectrum, an extended high band audio signal is generated by applying a high band spectral envelope. The extended high band audio signal is added to the decoded low band audio signal to generate an audio output signal having an extended frequency bandwidth.
    • 在本发明的一个实施例中,解码编码音频比特流并产生频率带宽扩展的方法包括对音频比特流进行解码以产生解码的低频带音频信号并产生对应于低频带的低频激励频谱。 使用指示解码的低频带音频信号的频谱包络的​​能量信息的参数从低频带内选择子带区域。 通过将子带激励频谱从所选择的子带区域复制到对应于高频带的高子带区域,为高频带生成高频带激励频谱。 使用所产生的高频带激励频谱,通过应用高频带频谱包络来产生扩展的高频带音频信号。 将扩展的高频带音频信号添加到解码的低频带音频信号以产生具有扩展的频率带宽的音频输出信号。