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    • 4. 发明申请
    • SYSTEM AND METHOD FOR NARROW BANDWIDTH DIGITAL SIGNAL PROCESSING
    • 窄带数字信号处理系统与方法
    • US20140369521A1
    • 2014-12-18
    • US14032347
    • 2013-09-20
    • Anthony BongioviGlenn ZelnikerJoseph G. Butera, III
    • Anthony BongioviGlenn ZelnikerJoseph G. Butera, III
    • H03G3/00
    • G10L19/26G10L21/034G10L21/0388H03G3/00H03G5/005H03G5/165H03G9/005H03G9/025H03G9/14
    • The present invention provides methods and systems for narrow bandwidth digital processing of an input audio signal. Particularly, the present invention includes a high pass filter configured to filter the input audio signal. A first compressor then modulates the filtered signal in order to create a partially processed signal. In some embodiments, a clipping module further limits the gain of the partially processed signal. A splitter is configured to split the partially processed signal into a first signal and a second signal. A low pass filter is configured to filter the first signal. A pass through module is configured to adjust the gain of the second signal. A mixer then combines the filtered first signal and the gain-adjusted second signal in order to output a combined signal. In some embodiments, a tone control module further processes the combined signal, and a second compressor further modulates the processed signal.
    • 本发明提供了用于输入音频信号的窄带数字处理的方法和系统。 特别地,本发明包括被配置为对输入音频信号进行滤波的高通滤波器。 然后,第一压缩器调制滤波后的信号,以产生部分处理的信号。 在一些实施例中,限幅模块进一步限制部分处理的信号的增益。 分配器被配置为将部分处理的信号分割成第一信号和第二信号。 低通滤波器被配置为对第一信号进行滤波。 通过模块被配置为调整第二信号的增益。 混频器然后组合经滤波的第一信号和经增益调整的第二信号,以输出组合信号。 在一些实施例中,音调控制模块进一步处理组合信号,并且第二压缩器进一步调制处理的信号。
    • 8. 发明申请
    • SYSTEM AND METHOD FOR NARROW BANDWIDTH DIGITAL SIGNAL PROCESSING
    • 窄带数字信号处理系统与方法
    • US20160240208A1
    • 2016-08-18
    • US15044768
    • 2016-02-16
    • Anthony BongioviGlenn ZelnikerJoseph G. Butera, III
    • Anthony BongioviGlenn ZelnikerJoseph G. Butera, III
    • G10L19/26H03G5/16H03G9/14G10L21/034G10L21/0388
    • G10L19/26G10L21/034G10L21/0388H03G3/00H03G5/005H03G5/165H03G9/005H03G9/025H03G9/14
    • The present invention provides methods and systems for narrow bandwidth digital processing of an input audio signal. Particularly, the present invention includes a high pass filter configured to filter the input audio signal. A first compressor then modulates the filtered signal in order to create a partially processed signal. In some embodiments, a clipping module further limits the gain of the partially processed signal. A splitter is configured to split the partially processed signal into a first signal and a second signal. A low pass filter is configured to filter the first signal. A pass through module is configured to adjust the gain of the second signal. A mixer then combines the filtered first signal and the gain-adjusted second signal in order to output a combined signal. In some embodiments, a tone control module further processes the combined signal, and a second compressor further modulates the processed signal.
    • 本发明提供了用于输入音频信号的窄带数字处理的方法和系统。 特别地,本发明包括被配置为对输入音频信号进行滤波的高通滤波器。 然后,第一压缩器调制滤波后的信号,以产生部分处理的信号。 在一些实施例中,限幅模块进一步限制部分处理的信号的增益。 分配器被配置为将部分处理的信号分割成第一信号和第二信号。 低通滤波器被配置为对第一信号进行滤波。 通过模块被配置为调整第二信号的增益。 混频器然后组合经滤波的第一信号和经增益调整的第二信号,以输出组合信号。 在一些实施例中,音调控制模块进一步处理组合信号,并且第二压缩器进一步调制处理的信号。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR STEREO FIELD ENHANCEMENT IN TWO-CHANNEL AUDIO SYSTEMS
    • 用于双通道音频系统中立体声场增强的系统和方法
    • US20140369504A1
    • 2014-12-18
    • US13936252
    • 2013-07-08
    • ANTHONY BONGIOVIGlenn ZelnikerJoseph G. Butera, III
    • ANTHONY BONGIOVIGlenn ZelnikerJoseph G. Butera, III
    • H04S7/00
    • H04S7/307H04S1/002
    • The present invention provides methods and systems for digitally processing audio signals in two-channel audio systems and/or applications. In particular, the present invention includes a first filter structured to split a two-channel audio input signal into a low frequency signal and a higher frequency signal. A M/S splitter is then structured to split the higher frequency signal into a middle and a side signal. A detection module is then configured to create a detection signal from the middle signal, which is used in a compression module configured to modulate the side signal to create a gain-modulated side signal. A processing module is then structured to combine the low frequency signal, middle signal, and the gain-modulated side signal to form a final output signal.
    • 本发明提供用于在双声道音频系统和/或应用中数字处理音频信号的方法和系统。 特别地,本发明包括被构造成将双声道音频输入信号分成低频信号和较高频率信号的第一滤波器。 然后将M / S分离器构造成将较高频率信号分成中间和侧面信号。 然后,检测模块被配置为从中间信号创建检测信号,该中间信号被用于被配置为调制侧信号以产生增益调制侧信号的压缩模块。 然后,处理模块被构造成组合低频信号,中间信号和增益调制侧信号以形成最终的输出信号。
    • 10. 发明授权
    • System and method for digital signal processing
    • 数字信号处理系统和方法
    • US08284955B2
    • 2012-10-09
    • US12263261
    • 2008-10-31
    • Anthony BongloviPhillip FullerGlenn Zelniker
    • Anthony BongloviPhillip FullerGlenn Zelniker
    • H03G5/00
    • H03G5/005H03G3/20H03G5/165H04R3/12H04R2499/13H04S7/307
    • The present invention provides methods and systems for digitally processing audio signals. Some embodiments receive an audio signal and converting it to a digital signal. The gain of the digital signal may be adjusted a first time, using a digital processing device located between a receiver and a driver circuit. The adjusted signal can be filtered with a first low shelf filter. The systems and methods may compress the filtered signal with a first compressor, process the signal with a graphic equalizer, and compress the processed signal with a second compressor. The gain of the compressed signal can be adjusted a second time. These may be done using the digital processing device. The signal may then be output through an amplifier and driver circuit to drive a personal audio listening device. In some embodiments, the systems and methods described herein may be part of the personal audio listening device.
    • 本发明提供了用于数字处理音频信号的方法和系统。 一些实施例接收音频信号并将其转换为数字信号。 可以使用位于接收机和驱动器电路之间的数字处理装置,首次调整数字信号的增益。 调整后的信号可以用第一个低架滤波器过滤。 系统和方法可以用第一压缩机压缩经滤波的信号,用图形均衡器处理信号,并用第二压缩机压缩经处理的信号。 可以第二次调整压缩信号的增益。 这些可以使用数字处理装置来完成。 然后可以通过放大器和驱动器电路输出信号以驱动个人音频听音装置。 在一些实施例中,本文所述的系统和方法可以是个人音频收听设备的一部分。