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    • 54. 发明申请
    • SIGNAL DISTRIBUTION WITHIN MODULAR STRUCTURES FACILITATING AGGREGATED AND FIELD-CUSTOMIZED MUSICAL INSTRUMENTS
    • 在模块化结构中的信号分配促进集成和现场自定义的音乐仪器
    • US20100224052A1
    • 2010-09-09
    • US12786438
    • 2010-05-25
    • Lester F. LUDWIG
    • Lester F. LUDWIG
    • G10H1/32
    • G10H1/32G10H1/342G10H1/348G10H2230/085G10H2230/095G10H2230/101G10H2230/105G10H2230/115G10H2230/121G10H2230/125G10H2230/145G10H2230/151G10H2240/056
    • A signal distribution system for a customizable aggregated musical instrument is described. The signal distribution system interfaces with a plurality of individual musical modules secured in a mounting frame having a plurality of mounting locations, each mounting location adapted to receive an individual musical module, and includes at least one instrument interface adapted to transmit interface signals to an external system and a signal routing infrastructure. Outgoing instrument interface signals include at least one of an outgoing audio signal, MIDI control signal, computer data signal, and video signal. Incoming instrument interface signals include at least one of an audio signal, MIDI control signal, computer data signal, and video signal. The musical instrument also includes at least one of an audio signal processing element, audio signal mixing element, audio sound production element, control signal processing element, control signal merging element, and controllable audio signal synthesizer element.
    • 描述了可定制的聚合乐器的信号分配系统。 信号分配系统与固定在具有多个安装位置的安装框架中的多个独立音乐模块相连接,每个安装位置适于接收单个音乐模块,并且包括适于将接口信号发送到外部的至少一个仪器接口 系统和信号路由基础设施。 输出乐器接口信号包括输出音频信号,MIDI控制信号,计算机数据信号和视频信号中的至少一个。 传入的乐器接口信号包括音频信号,MIDI控制信号,计算机数据信号和视频信号中的至少一个。 乐器还包括音频信号处理元件,音频信号混合元件,音频声音产生元件,控制信号处理元件,控制信号合并元件和可控音频信号合成器元件中的至少一个。
    • 56. 发明授权
    • Transcending extensions of classical south Asian musical instruments
    • 超经典南亚乐器的延伸
    • US07759571B2
    • 2010-07-20
    • US10688743
    • 2003-10-16
    • Lester F. Ludwig
    • Lester F. Ludwig
    • G10H3/00
    • G06F3/04883G06F3/005G06F3/017G06F3/041G06F3/0412G06F3/0416G06F3/04847G06F3/0488G10H1/00G10H1/0058G10H1/0066G10H1/348G10H1/46G10H3/18G10H3/26G10H2220/521G10H2220/525G10H2230/095G10H2230/101G10H2230/115G10H2230/145G10H2230/271Y10S84/10
    • South Asia's unique musical instruments and raag systems have provided many rich treasures to Western music. This invention melds Western-music technologies with the innovations, timbre, playing techniques, and performance environments of South Asian musical instruments and traditions. Sitars, Dilrubas, and Esraj may be provided with multi-channel signal processing and pitch change for individual strings, additional playing strings, keyboards, strumpads, percussion interfaces, controls for timbre and stage environment control, synthesizer interfaces, pickups for brass strings, resonant and twang processors, and spatial sound distribution. Bows may include sensors measuring the bow's physical activity or direct finger manipulation. Tabla and baya may be replaced with touch pads capable of recognizing relevant hand contact modalities and positions. Touch pads may be comprised of pressure sensor arrays that recognize traditional bols and permit other generalizations and deeper levels of sonic control. Sounds may be synthesized or processed from acoustic instrument sample playback.
    • 南亚独特的乐器和乐器系统为西方音乐提供了丰富的宝藏。 本发明融合了西方音乐技术与南亚乐器和传统的创新,音色,演奏技巧和表演环境。 Sitars,Dilrubas和Esraj可以为单个字符串,附加播放串,键盘,键盘,打击乐接口,音色和舞台环境控制的控制,合成器接口,黄铜琴串的拾音器,谐振 和twang处理器,以及空间声音分布。 弓可以包括测量弓的身体活动或直接手指操纵的传感器。 Tabla和baya可以用能够识别相关的手接触模态和位置的触摸板来代替。 触摸板可以由压力传感器阵列组成,其识别传统的波形并且允许其它概括和更深层次的声音控制。 声音可以从声学乐器样品播放中合成或处理。
    • 57. 发明授权
    • Modular structures facilitating aggregated and field-customized musical instruments
    • 模块化结构,促进聚合和现场定制的乐器
    • US07732702B2
    • 2010-06-08
    • US10737043
    • 2003-12-15
    • Lester F. Ludwig
    • Lester F. Ludwig
    • G10H1/32
    • G10H1/32G10H1/342G10H1/348G10H2230/085G10H2230/095G10H2230/101G10H2230/105G10H2230/115G10H2230/121G10H2230/125G10H2230/145G10H2230/151G10H2240/056
    • This invention allows for easy field-customization of mainstream and exotic electronic musical instruments with extensive support for the easy creation of aggregated instruments. This invention leverages extensive functional customization of instruments within mainstream accepted instrument modalities as well as opening a wide range of completely new instrument modalities. The invention further facilitates entirely new manufacturing, marketing, and sales paradigms permitting a broad range of open industry development and commerce, thus making an individual musician's creation of new exotic instrument arrangements an economically viable sector for both mass manufacturing and the niche cottage industry. New opportunities are provided for the creation of multiple-vendor standardizations, multiple-vendor manufacturing, multiple-vendor competitive features, etc. while offering the music equipment user and music industry as a whole, access to an extensive range of instrument customization, diversification, and education. The principles of the invention thus create a rich environment for instrument, user, feature, music, and market.
    • 本发明允许对主流和异国电子乐器的现场定制进行简单的定制,并且广泛地支持容易地创建聚合的乐器。 本发明利用主流接受的仪器模式中的仪器的广泛功能定制以及开启广泛的全新仪器模式。 本发明进一步促进了全新的制造,营销和销售模式,允许广泛的开放行业发展和商业,从而使个体音乐家创造新的异域乐器安排在大众制造业和利基小屋行业的经济可行部门。 为创建多厂商标准化,多供应商制造,多供应商竞争功能等提供了新的机会,同时为整个音乐设备用户和音乐行业提供了广泛的仪器定制,多样化, 和教育。 因此,本发明的原理为乐器,用户,特征,音乐和市场创造了丰富的环境。
    • 59. 发明申请
    • HIGH PARAMETER-COUNT TOUCHPAD CONTROLLER
    • 高参数计数触发控制器
    • US20070229477A1
    • 2007-10-04
    • US11761978
    • 2007-06-12
    • Lester Ludwig
    • Lester Ludwig
    • G06F3/041
    • G06F3/04883G06F3/005G06F3/017G06F3/041G06F3/0412G06F3/0416G06F3/04847G06F3/0488G10H1/00G10H1/0058G10H1/0066G10H1/348G10H1/46G10H3/18G10H3/26G10H2220/521G10H2220/525G10H2230/095G10H2230/101G10H2230/115G10H2230/145G10H2230/271Y10S84/10
    • Touchpad user interfaces for controlling external systems such as computers, machinery, and process environments via at least three independent control signals. The touchpad may be operated by hand, other parts of the body, or inanimate objects. Such an interface affords a wide range of uses in computer applications, machine and process control, and assistance to the disabled. In one embodiment simple contact position-sensing touchpads, producing control signals responsive to a contact region, are enhanced to provide several independent control signals. Enhancements may include velocity sensors, pressure sensors, and electronic configurations measuring contact region widths. Touch-screens positioned over visual displays may be adapted. According to other aspects pressure-sensor array touchpads are combined with image processing to responsively calculate parameters from contact regions. Six independent control parameters can be derived from each region of contact. These may be easily manipulated by a user. In one implementation, smaller pressure-sensor arrays are combined with data acquisition and processing into a chip that can be tiled in an array.
    • 触摸板用户界面,用于通过至少三个独立的控制信号控制计算机,机械和过程环境等外部系统。 触摸板可以手工操作,身体的其他部分或无生命的物体。 这样的接口在计算机应用,机器和过程控制以及对残疾人的帮助方面提供了广泛的用途。 在一个实施例中,增强了响应于接触区域产生控制信号的简单接触位置感测触摸板,以提供若干独立的控制信号。 增强可以包括速度传感器,压力传感器和测量接触区域宽度的电子配置。 可以调整位于视觉显示器上的触摸屏。 根据其他方面,压力传感器阵列触摸板与图像处理相结合,以响应地计算接触区域的参数。 可以从每个接触区域获得六个独立的控制参数。 这些可以容易地被用户操纵。 在一个实现中,较小的压力传感器阵列与数据采集和处理组合成可以平铺在阵列中的芯片。
    • 60. 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。