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    • 52. 发明授权
    • System and method for analysis and creation of music
    • 用于分析和创作音乐的系统和方法
    • US09183821B2
    • 2015-11-10
    • US14197316
    • 2014-03-05
    • Exomens Ltd.
    • Marcus A. Matusiak
    • G10H1/38G10H1/00
    • G10H1/0025G10H1/38G10H1/383G10H2210/081G10H2210/105G10H2210/111G10H2210/121G10H2210/145G10H2210/151G10H2210/331G10H2210/361G10H2210/395G10H2210/555G10H2210/576G10H2240/131
    • A method and system for analyzing patterns in the relationships of notes of an input piece of music. The method comprises generating a set of the most frequently occurring note pitches in ascending pitch order that matches an interval pattern, and detecting out-of-key pitches that lie outside of this interval pattern. One or more potential key sequence bifurcations are identified which represent a list of possible key sequences according to forwards and backwards analysis. By finding patterns of repetition in the chordal sequences that may be generated according to these key sequence bifurcations, a key sequence that allows the most frequently recurring chord sequences may be chosen. Chord sequences may be analyzed by using ghost chords, temporary harmonic structures that are created, updated and finalized over time according to a combination of essential and inessential note fragments. The method further comprises identifying non-harmony pitches according to the analyzed chord sequence.
    • 一种用于分析输入音乐音符关系中的图案的方法和系统。 该方法包括以与间隔图案相匹配的上升顺序产生一组最常发生的音调音调,以及检测位于该间隔图案之外的失调音高。 识别一个或多个潜在的键序列分叉,其表示根据前向和后向分析的可能的键序列的列表。 通过发现根据这些键序列分支可以产生的弦序列中的重复模式,可以选择允许最频繁重复的和弦序列的键序列。 可以通过使用幻影和弦,根据必要和不必要的音符片段的组合随时间创建,更新和定型的临时谐波结构来分析和弦序列。 该方法还包括根据分析的和弦序列来识别非和音间距。
    • 54. 发明申请
    • SYSTEM AND METHOD FOR ANALYSIS AND CREATION OF MUSIC
    • 音乐分析与创作系统与方法
    • US20140298973A1
    • 2014-10-09
    • US13843679
    • 2013-03-15
    • Exomens Ltd.
    • Marcus A. Matusiak
    • G10H1/38
    • G10H1/0025G10H1/38G10H1/383G10H2210/081G10H2210/105G10H2210/111G10H2210/121G10H2210/145G10H2210/151G10H2210/331G10H2210/361G10H2210/395G10H2210/555G10H2210/576G10H2240/131
    • A method and system for analyzing patterns in the relationships of notes of an input piece of music. The method comprises generating a set of the most frequently occurring note pitches in ascending pitch order that matches an interval pattern, and detecting out-of-key pitches that lie outside of this interval pattern. One or more potential key sequence bifurcations are identified which represent a list of possible key sequences according to forwards and backwards analysis. By finding patterns of repetition in the chordal sequences that may be generated according to these key sequence bifurcations, a key sequence that allows the most frequently recurring chord sequences may be chosen. Chord sequences may be analyzed by using ghost chords, temporary harmonic structures that are created, updated and finalized over time according to a combination of essential and inessential note fragments. The method further comprises identifying non-harmony pitches according to the analyzed chord sequence.
    • 一种用于分析输入音乐音符关系中的图案的方法和系统。 该方法包括以与间隔图案相匹配的上升顺序产生一组最常发生的音调音调,以及检测位于该间隔图案之外的失调音高。 识别一个或多个潜在的键序列分叉,其表示根据前向和后向分析的可能的键序列的列表。 通过发现根据这些键序列分支可以产生的弦序列中的重复模式,可以选择允许最频繁重复的和弦序列的键序列。 可以通过使用幻影和弦,根据必要和不必要的音符片段的组合随时间创建,更新和定型的临时谐波结构来分析和弦序列。 该方法还包括根据分析的和弦序列来识别非和音间距。
    • 56. 发明授权
    • Piano keyboard with key touch point detection
    • 钢琴键盘具有按键触摸点检测功能
    • US08710344B2
    • 2014-04-29
    • US13491045
    • 2012-06-07
    • Gary S. Pogoda
    • Gary S. Pogoda
    • G10H1/18
    • G06F3/0416G06F3/016G10H1/0008G10H2210/395G10H2220/096G10H2220/241G10H2230/015
    • The present invention relates to an application for an iPad or similar electronic device having a touch screen. It provides a sensor to detect the touch position along the vertical length of a key as it is being engaged and to then offset the notes of the keyboard accordingly. This enables several octaves of notes to be accessed on the touch screen at any given time with a key size that is sufficient for real time playing. This arrangement further enables the incremental offset of the note pitches in a continuous manner to emulate the “string stretching” and “fretless neck” techniques of guitars and basses. The invention further provides a screen overlay to physically define the borders and travel of the on-screen keys thereby emulating the tactile feedback of real keys, again in a manner sufficient for real time playing.
    • 本发明涉及具有触摸屏的iPad或类似电子设备的应用。 它提供一个传感器,用于在键被接合时沿着键的垂直长度检测触摸位置,然后相应地偏移键盘的音符。 这可以在任何给定的时间在触摸屏上访问几个八度音符,其键尺寸足以实时播放。 这种布置进一步使得音节间距的增量偏移以连续的方式模拟吉他和贝斯的“弦拉伸”和“无瑕疵的颈部”技术。 本发明还提供了一种屏幕覆盖层,用于物理地定义屏幕上的键的边界和行进,从而以足以实时播放的方式再次仿真真实键的触觉反馈。
    • 58. 发明申请
    • Systems and methods for composing music
    • 组合音乐的系统和方法
    • US20090260507A1
    • 2009-10-22
    • US12290929
    • 2008-11-05
    • Peter Gannon
    • Peter Gannon
    • G10H1/38
    • G10H1/383G10H1/0025G10H2210/086G10H2210/111G10H2210/141G10H2210/395G10H2240/131G10H2240/155G10H2250/211
    • A system and method for generating a new composition based on a database of pre-recorded performances of existing compositions. A system and method for generating an automated method for converting existing performances and associated MIDI transcriptions to a database and generating a new composition from the database. Musical improvisations are performed by musicians, in digital audio format. The digital audio data is transcribed to MIDI data and stored in a song file. The tempo, chord symbols used and key signature are input, and added to the song file. The digital audio file is analyzed and markers for the start and the end of phrases are added in a phrase marker text file. The system analyzes the MIDI transcriptions, chords, and phrase marker text. Information about sections and phrases of the solo from the phrase market text are stored in a “Riffs” file. The MIDI data transcriptions, the chord symbols and the Riffs files are combined into a Soloist Database File, consisting of one or more MIDI transcriptions of the audio improvisations. The musician's performances are stored as digital audio files such as WAV format files. An Options file is created by the user to control parameters about the solo to be generated. The system then generates a new improvisation based on any input chord progression and key, and the Options file, by choosing portions of the Soloist Database and corresponding portions of the digital audio files to construct the new improvisation. MIDI transcriptions corresponding to the digital audio performance are displayable as notation, piano roll, and on-screen instrument keyboard or fretboard.
    • 一种用于基于现有组合物的预先记录的性能的数据库生成新组合物的系统和方法。 一种用于产生用于将现有演奏和相关的MIDI转录转换为数据库并从数据库生成新构图的自动化方法的系统和方法。 音乐即兴演奏由音乐家以数字音频格式进行。 数字音频数据被转录成MIDI数据并存储在一个歌曲文件中。 输入速度,和弦符号和键签,并添加到歌曲文件。 分析数字音频文件,并将短语开始和结束的标记添加到短语标记文本文件中。 系统分析MIDI转录,和弦和短语标记文本。 关于短语市场文本中单独的部分和短语的信息存储在“Riffs”文件中。 MIDI数据转录,和弦符号和Riffs文件组合成一个独奏数据库文件,由一个或多个音频即兴演奏的MIDI录音组成。 音乐家的表演存储为数字音频文件,如WAV格式文件。 用户创建一个选项文件来控制要生成的独奏参数。 然后,系统基于任何输入和弦进行和键以及选项文件,通过选择Soloist数据库的部分和数字音频文件的相应部分来构建新的即兴创作,从而生成新的即兴演奏。 对应于数字音频性能的MIDI转录可以以符号,钢琴卷和屏幕乐器键盘或指板显示。
    • 60. 发明申请
    • Musical Composition Processing Device
    • 音乐作品处理装置
    • US20080011148A1
    • 2008-01-17
    • US11791523
    • 2005-12-05
    • Hiroaki Yamane
    • Hiroaki Yamane
    • G10H7/00
    • G10G1/00G10H1/00G10H2210/081G10H2210/395G10H2240/085G10H2240/131
    • A scale information inputting section (11) receives an input of scale information of a musical composition. Based on the scale information of the musical composition inputted to the scale information inputting section (11), an appearance probability calculating section (12) calculates appearance probabilities of pitch names included in the scale information for each of the pitch names. A template storing section (13) stores 24 types of previously created templates respectively corresponding to 24 types of keys. Based on an appearance probability distribution of the musical composition calculated by the appearance probability calculating section (12) and each of the templates stored in the template storing section (13), a load ratio calculating section (14) calculates load ratios respectively corresponding to the templates. A tonal information detecting section (15) detects, as tonal information of the musical composition, information indicating the load ratios calculated by the load ratio calculating section (14) as a set, or information calculated based on the set of the load ratios.
    • 比例信息输入部(11)接收乐曲的比例信息的输入。 根据输入到比例信息输入部分(11)的乐曲的比例信息,出现概率计算部分(12)计算每个音调名称的比例信息中包括的音调名称的外观概率。 模板存储部分(13)存储分别对应于24种类型的键的24种先前创建的模板。 根据由出现概率计算部分(12)计算的乐曲的出现概率分布和存储在模板存储部分(13)中的每个模板,负载比计算部分(14)分别计算与 模板。 音调信息检测部分(15)作为乐曲的音调信息检测表示由负载比计算部分(14)计算出的负载比例的信息作为一组,或者根据负载比的集合计算出的信息。