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    • 4. 发明申请
    • Electromagnetic musical instrument systems and related methods
    • 电磁乐器系统及相关方法
    • US20070017344A1
    • 2007-01-25
    • US11325296
    • 2006-01-04
    • Russell Stoneback
    • Russell Stoneback
    • G10H1/00
    • G10H1/0091G10H3/26G10H5/14G10H2210/231G10H2210/235G10H2210/251G10H2210/281G10H2210/311G10H2220/195G10H2220/411G10H2230/045G10H2230/135G10H2240/305G10H2240/311G10H2250/315
    • An electromagnetic (EM) musical instrument system is provided. The system comprises an excitation signal generator configured to generate an excitation signal. An excitation signal applier, coupled to the excitation signal generator, receives the excitation signal and transmits it to an EM musical instrument. The instrument receives the excitation signal and generates an EM ouput signal in response to the excitation signal. An EM output receiver receives the EM output signal. A method for generating electromagnetic music is also provided. An excitation signal is generated and applied to an EM instrument, comprised of a body comprising a shape and having EM characteristics that differ from one or more EM characteristics of a free space adjacent to the instrument, and a port coupled to the body, which receives and applies the excitation signal to the body. The responce of the instrument to the excitation signal is measured and recorded to generate an electromagnetic musical signal.
    • 提供电磁(EM)乐器系统。 该系统包括被配置为产生激励信号的激励信号发生器。 耦合到激励信号发生器的激励信号施加器接收激励信号并将其发送到EM乐器。 仪器接收激励信号,并根据激励信号产生EM输出信号。 EM输出接收器接收EM输出信号。 还提供了一种用于产生电磁音乐的方法。 产生激励信号并将其施加到EM仪器,该EM仪器包括一个主体,该主体包括具有不同于与该仪器相邻的自由空间的一个或多个EM特征的EM特征的形状,以及耦合到该主体的端口,该端口接收 并将激励信号施加到身体。 仪器对激励信号的响应被测量和记录,以产生电磁音乐信号。
    • 5. 发明申请
    • Audio buffer configuration
    • 音频缓冲区配置
    • US20020133248A1
    • 2002-09-19
    • US10093069
    • 2002-03-05
    • Todor J. FayBrian L. SchmidtDugan O. PorterJames F. Geist JR.
    • G06F017/00
    • H04S1/007G10H1/0041G10H1/0091G10H2210/235G10H2210/291G10H2240/056H04H60/04
    • An audio buffer configuration file is a data structure of configuration information that includes an audio buffer identifier to uniquely identify audio buffers that are instantiated from the configuration information. The information can include a buffer identifier to identify the buffer as a sink-in audio buffer that receives a stream of audio data from an audio data source, or as a mix-in audio buffer that receives one or more streams of audio data from other audio buffers. Further, the information can include logical bus identifiers to uniquely identify one or more logical buses that correspond to the audio buffer, where an individual logical bus streams audio data to the audio buffer when the audio buffer is created. The configuration information can also include an audio effects list to identify one or more audio effects that are instantiated as components of the audio buffer when the audio buffer is instantiated.
    • 音频缓冲器配置文件是包括用于唯一地识别从配置信息实例化的音频缓冲器的音频缓冲器标识符的配置信息的数据结构。 信息可以包括缓冲器标识符,以将缓冲器识别为从音频数据源接收音频数据流的接收音频缓冲器,或者作为从其他接收一个或多个音频数据流的混合音频缓冲器 音频缓冲区 此外,信息可以包括逻辑总线标识符,以唯一地标识对应于音频缓冲器的一个或多个逻辑总线,其中当产生音频缓冲器时,各个逻辑总线将音频数据流传输到音频缓冲器。 当音频缓冲器被实例化时,配置信息还可以包括音频效果列表以识别被实例化为音频缓冲器的组件的一个或多个音频效果。
    • 6. 发明授权
    • Sound control system for controlling an effect, tone volume and/or tone
color
    • 用于控制效果,音量和/或音色的声控系统
    • US5635658A
    • 1997-06-03
    • US250462
    • 1994-05-27
    • Masao KondoYoshihiro Shiiya
    • Masao KondoYoshihiro Shiiya
    • G10H1/00G10H1/02G01P3/00
    • G10H1/0066G10H1/0075G10H1/02G10H2210/201G10H2210/235G10H2210/251G10H2210/291
    • A data set including data representing volume levels of an original sound and of an effect-imparted sound that has been set by a first musical instrument is transmitted to a second musical instrument. If any effect corresponding to the transmitted effect volume level data is not achievable by the second musical instrument, the second musical instrument modifies the original sound volume level in accordance with the effect volume level data, to thereby control a total volume balance. When tone color designating information is transmitted from the first instrument to the second instrument and tone color designated by the information is achieved by the second instrument, data representing a tone color group having been achieved by the second instrument is stored. Then, when any tone color group not achievable by the second instrument is designated, the designated tone color group is replaced with the stored tone color group.
    • 包括表示由第一乐器设定的原始声音和效果赋予声音的音量的数据的数据组被发送到第二乐器。 如果与第二乐器不能实现与发送的效果音量等级数据相对应的任何效果,则第二乐器根据效果音量级别数据修改原始音量级,从而控制总体积平衡。 当从第一乐器向第二乐器发送音色指定信息时,由第二乐器实现由信息指定的乐音,存储表示由第二乐器实现的音色组的数据。 然后,当指定由第二乐器不能实现的任何音色组时,指定的音色组被存储的音色组替换。
    • 7. 发明授权
    • Audio signal processor
    • 音频信号处理器
    • US5469508A
    • 1995-11-21
    • US131780
    • 1993-10-04
    • Jeffrey J. Vallier
    • Jeffrey J. Vallier
    • G10H1/00H04S1/00H03G3/00
    • G10H1/0033H04S1/007G10H2210/235G10H2210/251G10H2210/281
    • An audio signal processor capable of both sampling and audio processing external audio signals is disclosed. The audio signal processor can sample an audio signal and store it in a fixed store in a two function memory for later playback or manipulation. The processor can also audio process external signals in real time by splitting an incoming signal into two parts; processing one part such that it is time delayed and/or pitch shifted, or both, with respect to the unaltered part; and recombining the processed part and the unaltered part to achieve time delay effects such as flanging, chorus and echo. Moreover, the audio signal processor can output samples from the fixed store and real time processed signals simultaneously to achieve complex sound combinations and auditory effects.
    • 公开了能够对外部音频信号进行采样和音频处理的音频信号处理器。 音频信号处理器可以对音频信号进行采样并将其存储在两个功能存储器中的固定存储器中,用于稍后的播放或操纵。 处理器还可以通过将输入信号分成两部分来实时地音频处理外部信号: 处理一部分,使得它相对于未改变的部分是时间延迟的和/或俯仰移位的,或两者的; 并重新组合处理部分和未改变的部分,以实现延时效果,如法兰,合唱和回声。 此外,音频信号处理器可以同时从固定存储器和实时处理的信号输出采样,以实现复杂的声音组合和听觉效果。