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    • 5. 发明公开
    • METHOD OF MODELING CHARACTERISTICS OF A NON LINEAR SYSTEM
    • 非线性系统的特征建模方法
    • EP3121608A2
    • 2017-01-25
    • EP16176571.4
    • 2016-06-28
    • Positive Grid LLC
    • WANG, Tien-MingYEH, Yi-FanSIAO, Yi-Song
    • G01R23/20
    • G06F17/5009G01R23/20G01R31/28G01R31/2837G06F17/11G10H1/06G10H1/16G10H5/00G10H5/002G10H5/007G10H7/00G10H2210/031G10H2250/00G10H2250/471G10H2250/511
    • A method of modeling (fig. 4, fig. 5) a characteristic of a non-linear system (21), comprises feeding test input signals (Sig6, Sig7) into the non-linear system (21) to obtain test output signals (Resp6, Resp7), wherein the test input signals (Sig6, Sig7) include a first test input signal (Sig6) and the test output signals (Resp6, Resp7) include a first test output signal (Resp6), identifying occurrences when an output level in at least one specific frequency band of the first testing output signal significantly changes under the first test input signal (e.g. identifying the frequencies at which there are overtones) so as to obtain a first profile (Profile B: frequency index versus input level, fig. 7), and modeling the characteristic (e.g. frequency response of pre-amplifier stage, fig. 8) based on the first profile (fig. 20).
      Various test input signals may be used : Amplitude sweep (fig. 6a-c), frequency sweep (fig. 10), white noise or chirp signal. The breakup point of overtones onsets in the table of frequency bins versus input signal is determined.
      The application of this profile to model the non-linear amplifier stage of a music instrument, for instance a guitar, is also defined.
    • 一种对非线性系统(21)的特性进行建模(图4,图5)的方法包括将测试输入信号(Sig6,Sig7)馈送到非线性系统(21)中以获得测试输出信号( (Sig6,Sig7)包括第一测试输入信号(Sig6),并且测试输出信号(Resp6,Resp7)包括第一测试输出信号(Resp6),该第一测试输出信号(Resp6,Resp7) 在第一测试输出信号的至少一个特定频带中在第一测试输入信号(例如,识别存在泛音的频率)下显着改变以获得第一简档(简档B:频率索引对输入电平,无花果 基于第一轮廓(图20)对特性(例如,前置放大器级的频率响应,图8)进行建模。 可以使用各种测试输入信号:幅度扫描(图6a-c),频率扫描(图10),白噪声或啁啾信号。 确定频率表中的泛音起始点与输入信号的分离点。 还定义了该曲线的应用来模拟乐器的非线性放大器级,例如吉他。
    • 7. 发明公开
    • Singing voice synthesizing apparatus with selective use of templates for attack and non-attack notes
    • 在考虑这取决于唱音调的背景下方法不同型号的合成歌声的装置
    • EP1455340A1
    • 2004-09-08
    • EP04100822.8
    • 2004-03-02
    • YAMAHA CORPORATION
    • Kemmochi, Hideki
    • G10L13/02G10H5/00
    • G10L13/033G10H5/00G10H2250/455
    • In an apparatus for synthesizing a singing voice of a song, a storage section stores template data in correspondence to various expressions applicable to music notes. The template data includes first and second template data differently defining a temporal variation of a characteristic parameter for applying the corresponding expression to an attack note and a non-attack note, respectively. An input section inputs voice information representing a sequence of vocal elements and specifying expressions in correspondence to the respective vocal elements. A synthesizing section synthesizes the singing voice from the sequence of the vocal elements based on the inputted voice information. When the vocal element is of an attack note, the first template data is applied to the vocal element. Otherwise, when the vocal element is of a non-attack note, the second template data is applied to the vocal element.
    • 在上述合成一首歌曲的歌声的设备,存储单元存储模板对应的数据适用于音符各种表情。 模板数据包括第一和第二模板数据不同地限定用于施加相应的表达分别攻击音符和非攻击音符,特征参数的时间变化。 代表声元件的序列,并且在对应于所述respectivement发声元件指定表达式的输入部输入的语音信息。 合成部合成从基于所输入的声音信息发声的元素序列的歌声。 当声乐元素攻击注意,第一模板数据被应用到声乐元素。 否则,当声音元素是一个非攻值得注意的是,第二个模板数据被应用到声乐元素。
    • 9. 发明公开
    • METHOD OF MODELING CHARACTERISTICS OF A NON LINEAR SYSTEM.
    • VERFAHREN ZUR MODELLIERUNG VON EIGENSCHAFTEN EINES NICH-LINEARES SYSTEMS。
    • EP3121608A3
    • 2017-03-01
    • EP16176571.4
    • 2016-06-28
    • Positive Grid LLC
    • WANG, Tien-MingYEH, Yi-FanSIAO, Yi-Song
    • G01R23/20
    • G06F17/5009G01R23/20G01R31/28G01R31/2837G06F17/11G10H1/06G10H1/16G10H5/00G10H5/002G10H5/007G10H7/00G10H2210/031G10H2250/00G10H2250/471G10H2250/511
    • A method of modeling (fig. 4, fig. 5) a characteristic of a non-linear system (21), comprises feeding test input signals (Sig6, Sig7) into the non-linear system (21) to obtain test output signals (Resp6, Resp7), wherein the test input signals (Sig6, Sig7) include a first test input signal (Sig6) and the test output signals (Resp6, Resp7) include a first test output signal (Resp6), identifying occurrences when an output level in at least one specific frequency band of the first testing output signal significantly changes under the first test input signal (e.g. identifying the frequencies at which there are overtones) so as to obtain a first profile (Profile B: frequency index versus input level, fig. 7), and modeling the characteristic (e.g. frequency response of pre-amplifier stage, fig. 8) based on the first profile (fig. 20).
      Various test input signals may be used : Amplitude sweep (fig. 6a-c), frequency sweep (fig. 10), white noise or chirp signal. The breakup point of overtones onsets in the table of frequency bins versus input signal is determined.
      The application of this profile to model the non-linear amplifier stage of a music instrument, for instance a guitar, is also defined.
    • 一种建模方法(图4,图5)是非线性系统(21)的特征,包括将测试输入信号(Sig6,Sig7)馈送到非线性系统(21)中以获得测试输出信号 Resp6,Resp7),其中测试输入信号(Sig6,Sig7)包括第一测试输入信号(Sig6),并且测试输出信号(Resp6,Resp7)包括第一测试输出信号(Resp6),当输出电平 在第一测试输出信号的至少一个特定频带在第一测试输入信号(例如,识别出有泛音的频率)下显着变化,以便获得第一曲线(曲线B:频率指数与输入电平,图 7),并且基于第一轮廓(图20)对特性(例如,前置放大器级的频率响应,图8)建模。 可以使用各种测试输入信号:幅度扫描(图6a-c),频率扫描(图10),白噪声或啁啾信号。 确定频率表与输入信号表中的泛音上断点。 还定义了该配置文件对乐器(例如吉他)的非线性放大器级的建模的应用。