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    • 1. 发明授权
    • Character animation method and apparatus
    • 特征动画方法和装置
    • US5074821A
    • 1991-12-24
    • US467252
    • 1990-01-18
    • James McKeeferyJames SachsJames FanMing Liang
    • James McKeeferyJames SachsJames FanMing Liang
    • A63H3/36A63H3/28A63H3/48A63H13/04G09F19/08
    • A63H3/28A63H3/48
    • A voice track is recorded on one track of a dual track recording device, typically a tape recorder. On a second track of the recorder an animation signal is recorded characterized by the signal having a frequency at any given time indicative of the then currently desired animation condition. A character is provided having a tape playback unit therein for playing back such pre-recorded dual track tapes, the character having an amplifier and speaker for reproducing the audio information, and a servo motor having a drive system for driving the character mouth elements and eyes with the desired animation, the drive system having a feedback device thereon for providing a feedback signal to the servo motor control. The electronics in the character which is responsive to the animation control signal provided by the playback unit to provide the servo motor drive signal effectively updates the servo motor drive signal on each cycle of the animation control signal received from the playback unit.
    • 语音轨道被记录在双轨记录装置的一个轨道上,通常是磁带录音机。 在记录器的第二轨道上记录动画信号,其特征在于在任何给定时间具有当前当前所期望的动画条件的频率的信号。 提供了一种具有其中的带重放单元的字符,用于回放这种预先记录的双轨磁带,该字符具有用于再现音频信息的放大器和扬声器,以及具有用于驱动字符口元素和眼睛的驱动系统的伺服电动机 具有期望的动画,驱动系统在其上具有用于向伺服电动机控制提供反馈信号的反馈装置。 响应于由重放单元提供的动画控制信号提供伺服电机驱动信号的字符的电子元件在从播放单元接收的动画控制信号的每个周期上有效地更新伺服电动机驱动信号。
    • 6. 发明授权
    • Zoom lens system
    • 变焦镜头系统
    • US06781770B1
    • 2004-08-24
    • US10452385
    • 2003-06-03
    • Kuo Wen ChangMing Liang
    • Kuo Wen ChangMing Liang
    • G02B1514
    • G02B13/14G02B15/177
    • A zoom lens system comprises a first lens group having negative refractive power, a second lens group having positive refractive power, and a third lens group having positive refractive power. The first lens group includes a first lens unit having negative refractive power, which includes a negative lens and a negative lens having at least one aspherical surface, and a second lens unit including a positive lens. The second lens group includes an aperture element, a first lens unit having positive refractive power, which has a positive lens, a second lens unit having positive refractive power, which has a cemented positive lens including a positive lens and a negative lens, and a third lens unit having negative refractive power, which has a negative lens having at least one aspherical surface. The third lens group includes a positive lens plating with a multi-layer coating in the surface facing to the object side in order to cut off infrared rays and decrease the influence of infrared rays on image.
    • 变焦透镜系统包括具有负屈光力的第一透镜组,具有正屈光力的第二透镜组和具有正折光力的第三透镜组。 第一透镜组包括具有负折光力的第一透镜单元,其包括具有至少一个非球面的负透镜和负透镜,以及包括正透镜的第二透镜单元。 第二透镜组包括孔径元件,具有正折光力的第一透镜单元,其具有正透镜,具有正屈光力的第二透镜单元,其具有包括正透镜和负透镜的胶结正透镜,以及 具有负屈光力的第三透镜单元,其具有至少一个非球面的负透镜。 第三透镜组包括在面向物体侧的表面中具有多层涂层的正透镜电镀,以便截断红外线并减少红外线对图像的影响。
    • 8. 发明授权
    • Method to extract target signals of a known type from raw data containing an unknown number of target signals, interference, and noise
    • 从包含未知数目的目标信号,干扰和噪声的原始数据中提取已知类型的目标信号的方法
    • US08073634B2
    • 2011-12-06
    • US12235008
    • 2008-09-22
    • Ming LiangTet Hin YeapXianfeng FanIman Soltani Bozchalooi
    • Ming LiangTet Hin YeapXianfeng FanIman Soltani Bozchalooi
    • G06F19/00
    • G06K9/00516G05B23/0229
    • A signal analysis method extracts transient target signals of known type from a raw data source signal that contains an unknown number of target signals. The method can enhance the analysis of data obtained from in-line oil-debris sensors. The method comprises steps of: defining signatures of the known target signal, and of at least one of the intrinsic noise and interfering signals; performing a mathematical transform that decomposes the raw data into distinct data sets; using the signal signatures to identify and nullify the data sets containing noise and interfering signal signatures; using the target signal signatures to identify the data sets containing target signal components, or may further use a thresholding rule to remove intrinsic noise from said data sets, and finally applying the inverse transform to the processed data sets in order to reconstruct an enhanced output signal.
    • 信号分析方法从包含未知数目的目标信号的原始数据源信号中提取已知类型的瞬态目标信号。 该方法可以增强从在线油污传感器获得的数据的分析。 该方法包括以下步骤:定义已知目标信号和本征噪声和干扰信号中的至少一个的签名; 执行将原始数据分解成不同数据集的数学变换; 使用信号签名识别和消除包含噪声和干扰信号签名的数据集; 使用目标信号签名来识别包含目标信号分量的数据集,或者可以进一步使用阈值规则来从所述数据集中去除固有噪声,并且最后将逆变换应用于经处理的数据集,以便重建增强的输出信号 。