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    • 1. 发明申请
    • Stringed instrument with embedded DSP modeling for modeling acoustic stringed instruments
    • 具有嵌入式DSP建模的弦乐器,用于建模声弦乐器
    • US20060101987A1
    • 2006-05-18
    • US11321395
    • 2005-12-29
    • Peter CeliMichel DoidicMarcus Ryle
    • Peter CeliMichel DoidicMarcus Ryle
    • G10H3/00
    • G10H3/186G10H1/053G10H1/125G10H3/185G10H3/188G10H2210/281G10H2230/111G10H2230/115G10H2230/121G10H2230/151G10H2250/115
    • Disclosed is a stringed instrument with embedded DSP modeling capabilities to model an acoustic stringed instrument. The stringed instrument has a body and a plurality of strings and each of the plurality of strings is respectively coupled to a pickup to detect a vibration signal for each string. An A/D converter converts the detected vibration signal of a string into a digital string vibration signal. A DSP is located within the body of the stringed instrument to process the digital string vibration signal and to implement an acoustic modeling system to process the digital string vibration signal in order to emulate a corresponding string tone of one of a plurality of selectable acoustic stringed instruments. Acoustic modeling includes acoustic string and body modeling, microphone placement modeling, and pick-sound modeling. The emulated acoustic digital tone signal is then converted to analog form for output to an amplification device.
    • 公开了一种具有嵌入式DSP建模功能的弦乐器,用于对声学弦乐器进行建模。 弦乐器具有主体和多个琴弦,并且多个弦中的每一个分别耦合到拾音器以检测每个弦的振动信号。 A / D转换器将检测到的串的振动信号转换成数字串振动信号。 DSP位于弦乐器的主体内以处理数字弦振动信号,并实现声学建模系统来处理数字弦振动信号,以便模拟多个可选择的弦乐器之一的对应琴弦 。 声学建模包括声学字符串和身体建模,麦克风位置建模和拾音建模。 然后将仿真的声学数字音调信号转换成模拟形式以输出到放大装置。
    • 3. 发明授权
    • Multi-channel nonlinear processing of a single musical instrument signal
    • 单声道乐器信号的多通道非线性处理
    • US06881891B1
    • 2005-04-19
    • US10197008
    • 2002-07-16
    • Olivier LimacherMarcus RyleMichel DoidicCarol A. Hatzinger
    • Olivier LimacherMarcus RyleMichel DoidicCarol A. Hatzinger
    • G10H1/16G10H3/18G10H5/02G10H7/00
    • G10H1/16G10H3/187
    • Multiple channels simultaneously provide multiple, modified digital audio signals, respectively, based on the same digital audio input signal. Each channel has a respective nonlinear effects section to apply a nonlinear transfer function, such as one that emulates a vacuum tube guitar amplifier, based on the input signal. In addition, a respective audio effects section is provided in each channel to apply an audio effect, such as a linear audio effect, based on the input signal. This audio effect is set in each channel by a controller. In another embodiment, multi-tracker (e.g., double tracker) functionality is provided by the multiple channels wherein at least one of the delay effect, pitch shift, and gain change in a channel is automatically changed as a function of the input signal.
    • 基于相同的数字音频输入信号,多个通道分别同时提供多个经修改的数字音频信号。 每个通道具有各自的非线性效应部分,用于基于输入信号应用诸如仿真真空管吉他放大器的非线性传递函数。 此外,在每个声道中设置相应的音频效果部分,以基于输入信号施加诸如线性音频效果的音频效果。 该音频效果由控制器在每个通道中设置。 在另一个实施例中,由多个通道提供多追踪器(例如,双跟踪器)功能,其中信道中的延迟效果,音调移位和增益改变中的至少一个作为输入信号的函数自动改变。
    • 4. 发明申请
    • Audio signal processor with modular user interface and processing functionality
    • 具有模块化用户界面和处理功能的音频信号处理器
    • US20060064186A1
    • 2006-03-23
    • US10948585
    • 2004-09-23
    • Marcus RyleMichel Doidic
    • Marcus RyleMichel Doidic
    • G06F17/00
    • G10H3/186G10H1/0091
    • Disclosed is an audio signal processor that determines the type of audio processing to be performed utilizing an audio processing device (APD) and a removable module. The APD includes a digital signal processor (DSP) that modifies an input audio signal in accordance with a signal processing instruction set. The removable module includes the signal processing instruction set, and when the removable module is coupled to the APD, the signal processing instruction set is transferred to and implemented by the DSP of the APD to perform an audio processing function upon the input audio signal. The removable module may also include a user interface having at least one control to set a control parameter that is transferred to the DSP of the APD to further modify audio processing. The APD may also include a multi-state footswitch whose functionality can be determined by the DSP.
    • 公开了一种音频信号处理器,其确定使用音频处理设备(APD)和可移除模块来执行的音频处理的类型。 APD包括根据信号处理指令集修改输入音频信号的数字信号处理器(DSP)。 可移动模块包括信号处理指令集,并且当可移动模块耦合到APD时,信号处理指令集被传送到APD的DSP并由其实现,以在输入的音频信号上执行音频处理功能。 可拆卸模块还可以包括具有至少一个控制的用户界面,用于设置传送到APD的DSP的控制参数以进一步修改音频处理。 APD还可以包括多状态脚踏开关,其功能可由DSP确定。
    • 7. 发明授权
    • Multi-channel nonlinear processing of a single musical instrument signal
    • 单声道乐器信号的多通道非线性处理
    • US06998528B1
    • 2006-02-14
    • US10840340
    • 2004-05-05
    • Olivier LimacherMarcus RyleMichel DoidicCarol A. Hatzinger
    • Olivier LimacherMarcus RyleMichel DoidicCarol A. Hatzinger
    • G10H5/02G10H7/00
    • G10H1/16G10H3/187
    • Multiple channels simultaneously provide multiple, modified digital audio signals, respectively, based on the same digital audio input signal. Each channel has a respective nonlinear effects section to apply a nonlinear transfer function, such as one that emulates a vacuum tube guitar amplifier, based on the input signal. In addition, a respective audio effects section is provided in each channel to apply an audio effect, such as a linear audio effect, based on the input signal. This audio effect is set in each channel by a controller. In another embodiment, multi-tracker (e.g., double tracker) functionality is provided by the multiple channels wherein at least one of the delay effect, pitch shift, and gain change in a channel is automatically changed as a function of the input signal.
    • 基于相同的数字音频输入信号,多个通道分别同时提供多个经修改的数字音频信号。 每个通道具有各自的非线性效应部分,用于基于输入信号应用诸如仿真真空管吉他放大器的非线性传递函数。 此外,在每个声道中设置相应的音频效果部分,以基于输入信号施加诸如线性音频效果的音频效果。 该音频效果由控制器在每个通道中设置。 在另一个实施例中,由多个通道提供多追踪器(例如,双跟踪器)功能,其中信道中的延迟效果,音调移位和增益改变中的至少一个作为输入信号的函数自动改变。
    • 9. 发明授权
    • Stringed instrument with embedded DSP modeling for modeling acoustic stringed instruments
    • 具有嵌入式DSP建模的弦乐器,用于建模声弦乐器
    • US07279631B2
    • 2007-10-09
    • US10933653
    • 2004-09-03
    • Peter J. CeliMichel A. DoidicMarcus Ryle
    • Peter J. CeliMichel A. DoidicMarcus Ryle
    • G10H1/06
    • G10H3/186G10H1/053G10H1/125G10H3/185G10H3/188G10H2210/281G10H2230/111G10H2230/115G10H2230/121G10H2230/151G10H2250/115
    • Disclosed is a stringed instrument with embedded DSP modeling capabilities to model an acoustic stringed instrument. The stringed instrument has a body and a plurality of strings and each of the plurality of strings is respectively coupled to a pickup to detect a vibration signal for each string. An A/D converter converts the detected vibration signal of a string into a digital string vibration signal. A DSP is located within the body of the stringed instrument to process the digital string vibration signal and to implement an acoustic modeling system to process the digital string vibration signal in order to emulate a corresponding string tone of one of a plurality of selectable acoustic stringed instruments. Acoustic modeling includes acoustic string and body modeling, microphone placement modeling, and pick-sound modeling. The emulated acoustic digital tone signal is then converted to analog form for output to an amplification device.
    • 公开了一种具有嵌入式DSP建模功能的弦乐器,用于对声学弦乐器进行建模。 弦乐器具有主体和多个琴弦,并且多个弦中的每一个分别耦合到拾音器以检测每个弦的振动信号。 A / D转换器将检测到的串的振动信号转换成数字串振动信号。 DSP位于弦乐器的主体内以处理数字弦振动信号并实现声学建模系统以处理数字弦振动信号,以便模拟多个可选择的弦乐器之一的对应琴弦 。 声学建模包括声学字符串和身体建模,麦克风位置建模和拾音建模。 然后将仿真的声学数字音调信号转换成模拟形式以输出到放大装置。