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    • 3. 发明授权
    • Sensor array touchscreen recognizing finger flick gesture and other touch gestures
    • 传感器阵列触摸屏识别手指轻弹手势和其他触摸手势
    • US08717303B2
    • 2014-05-06
    • US11761978
    • 2007-06-12
    • Lester F. Ludwig
    • Lester F. 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
    • Touchscreen user interfaces for controlling software applications, computers, devices, machinery, and process environments with at least finger flick touch gestures. Such user interfaces can be manipulated by users and provide a wide range of uses with computer applications, assistance to the disabled, and control of electronic devices, machines, and processes. Enhancements can include velocity and pressure sensing capabilities. The touchscreen can be realized with a transparent touch sensor array positioned over a visual display. Dynamically assigned labels can be provided by the visual display. Gestures other than finger flicks can be recognized. Multitouch capabilities can be included that are responsive to additional contact, for example by other parts of a user hand. Displayed visual content, including visual content selection, motion, and sizing, can be controlled by finger flicks and other touch gestures. Finger movement trajectories can be tracked, and pluralities of control parameters can be associated with each gesture.
    • 用于控制软件应用程序,计算机,设备,机械和处理环境的触摸屏用户界面,至少具有手指轻触的手势。 这样的用户界面可以由用户操纵并且提供与计算机应用程序的广泛使用,对残疾人的帮助,以及电子设备,机器和过程的控制。 增强功能可以包括速度和压力感测功能。 触摸屏可以用位于视觉显示器上的透明触摸传感器阵列来实现。 动态分配的标签可以通过视觉显示来提供。 可以识别手指以外的手势。 可以包括响应于附加联系人的多点触摸功能,例如由用户手的其他部分。 可以通过手指轻触和其他触摸手势来控制显示的视觉内容,包括视觉内容选择,动作和大小。 可以跟踪手指移动轨迹,并且可以将多个控制参数与每个手势相关联。
    • 6. 发明授权
    • Signal processing for cross-flanged spatialized distortion
    • 交叉法兰空间畸变的信号处理
    • US07652208B1
    • 2010-01-26
    • US10702941
    • 2003-11-06
    • Lester F. Ludwig
    • Lester F. Ludwig
    • G10H1/08
    • G06F3/04883G06F3/005G06F3/017G06F3/041G06F3/0412G06F3/0416G06F3/04847G06F3/0488G10H1/00G10H1/0058G10H1/0066G10H1/348G10H1/46G10H3/18G10H3/26G10H2220/521G10H2220/525G10H2230/095G10H2230/101G10H2230/115G10H2230/145G10H2230/271Y10S84/10
    • This invention provides a signal processing and signal synthesis technique from a family of signal processing and signal synthesis techniques designed to readily interwork or be used individually in creating new forms of rich musical timbres. A multi-channel cross-flanger with differing modulation signals for each flanger element deepens synthesized sounds. The configuration may process outputs from a plurality of distortion signal processors, each driven by a related signal, to create new levels of distortion richness. Each distortion signal processor may be driven by an output of a multiple-output spatializing signal processor. The characteristics and parameters of the processors and modulations may be recalled from stored program control or varied by real-time control signals, including those derived from the original input signal. The invention may be used individually or in conjunction with other signal processing and signal synthesis techniques in creating new forms of rich musical timbres. The invention may also be used in spatially-distributed timbre construction.
    • 本发明提供了一种信号处理和信号合成技术,该技术由一系列信号处理和信号合成技术组成,其技术设计用于在创建新形式的丰富的音乐铃声中单独地互相使用或单独使用。 对于每个镶边元件,具有不同调制信号的多通道交叉镶边加深了合成的声音。 该配置可以处理由相关信号驱动的多个失真信号处理器的输出,以产生新的失真丰富度。 每个失真信号处理器可以由多输出空间化信号处理器的输出驱动。 处理器和调制的特性和参数可以从存储的程序控制中调用,或者通过实时控制信号(包括从原始输入信号得到的信号)来变化。 本发明可以单独使用或与其他信号处理和信号合成技术结合使用来创建新形式的丰富的音乐铃声。 本发明也可以在空间分布的音色结构中使用。
    • 8. 发明申请
    • Performance environments supporting interactions among performers and self-organizing processes
    • 表现环境支持表演者和自组织过程之间的互动
    • US20040069125A1
    • 2004-04-15
    • US10676165
    • 2003-09-30
    • Lester F. Ludwig
    • G10H007/00
    • G06F3/04883G06F3/005G06F3/017G06F3/041G06F3/0412G06F3/0416G06F3/04847G06F3/0488G10H1/00G10H1/0058G10H1/0066G10H1/348G10H1/46G10H3/18G10H3/26G10H2220/521G10H2220/525G10H2230/095G10H2230/101G10H2230/115G10H2230/145G10H2230/271Y10S84/10
    • A system for supporting performer interactions with a self-organizing chemical reaction based on monitoring and interpretation of a controllable self-organizing chemical reaction contained within a reaction vessel. The self-organizing chemical reaction initially includes two or more constituent chemical reactants which may be controllably replenished. Controller elements, responsive to reaction control signals, influence the reaction. Reaction control signals are generated by a processor in response to incoming performance signals. Selectable control-conversion algorithms may be used for this purpose, permitting an incoming performance signal to responsively influence the self-organizing chemical reaction. One or more electrodes or chemical sensors, a video camera, or other monitoring devices may be used to monitor the chemical reaction and produce outgoing control signals for controlling synthesizers, signal processing, lighting, or video synthesis. Outgoing control signals are created by interpreting monitoring signals according to selectable algorithms. Video camera signals may be displayed or projected in a visual performance environment
    • 基于监测和解释包含在反应容器内的可控自组织化学反应的用于支持与自组织化学反应相关的执行者相互作用的系统。 自组织化学反应最初包括可以可控地补充的两种或更多种组分化学反应物。 响应于反应控制信号的控制元件影响反应。 反应控制信号由处理器响应输入的性能信号产生。 可以使用可选择的控制转换算法用于此目的,允许输入性能信号响应地影响自组织化学反应。 可以使用一个或多个电极或化学传感器,摄像机或其他监测装置来监测化学反应并产生用于控制合成器,信号处理,照明或视频合成的输出控制信号。 通过根据可选算法解释监视信号来创建出局控制信号。 摄像机信号可以在视觉表现环境中显示或投影