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    • 31. 发明授权
    • Unique color separation techniques for stereoscopic 3D projection
    • 用于立体3D投影的独特颜色分离技术
    • US08125710B2
    • 2012-02-28
    • US12422247
    • 2009-04-10
    • Bradley NelsonEdmund Sandberg
    • Bradley NelsonEdmund Sandberg
    • G02B13/00G03B21/14
    • G02B27/26G02B27/2207
    • Primary colors red, green and blue are each transmitted in three adjacent frequencies to create stereoscopic 3D images. A true center frequency for each primary color is transmitted to one eye while two straddling frequencies, on either side of the center frequency, are transmitted to the other eye. Untinted, notch filtered stereoscopic 3D eyeglasses may be used to segregate light frequencies and direct one channel to each eye of the viewer. A new dual channel laser illumination projection engine may be used to homogenize, condense, combine, and polarize light from red, blue and green lasers to create stereoscopic images suitable for projection on either white of sliver screens.
    • 原色红,绿,蓝各自以三个相邻的频率传输,以产生立体3D图像。 每个原色的真实中心频率被发送到一只眼睛,而在中心频率的任一侧上的两个跨越频率被传输到另一只眼睛。 未知的,陷波滤波的立体3D眼镜可以用于分离光频率并且将一个通道引导到观看者的每个眼睛。 可以使用新的双通道激光照明投影引擎来均匀化,凝结,组合和偏振来自红,蓝和绿激光的光,以产生适合于在任何一条银条屏幕上投影的立体图像。
    • 36. 发明申请
    • GRAPHICAL NATURAL LANGUAGE BOOLEAN DEPENDENCY BUILDER AND METHODS OF USING THE SAME
    • 图形自然语言布鲁塞尔依附建筑物及其使用方法
    • US20160334950A1
    • 2016-11-17
    • US15154798
    • 2016-05-13
    • Bradley NelsonCalvin Zant
    • Bradley NelsonCalvin Zant
    • G06F3/0482G06F3/0484G06F3/0481G06F17/21G06F3/0486
    • G06Q10/103G06F16/2423G06Q10/0633G06Q10/067
    • Disclosed herein are systems and methods of use directed to Boolean builders. More specifically, the disclosed invention relates to systems and methods of use directed to graphical Boolean dependency builder interfaces as part of business process flows. In embodiments, the disclosed systems are configured to provide an interface allowing a user of the system with little or no knowledge of programming to create complex Boolean expressions which are utilized in the system or software. The creation of the Boolean expressions are performed by the user dragging and dropping objects which are representative of data elements (operands) and operations (operators) as well as evaluation orders. In a further embodiment, the system is configured to allow the user of the system to utilize drop down menus and selection options to further create and modify the Boolean expressions. The created expressions may then be utilized as part of a business process flow to achieve the desired outputs or obtain the desired results.
    • 这里公开的是针对布尔构建器的系统和使用方法。 更具体地,所公开的发明涉及作为业务处理流程的一部分的针对图形布尔依赖构建器界面的系统和方法。 在实施例中,所公开的系统被配置为提供允许系统的用户很少或不知道编程的接口来创建在系统或软件中使用的复杂布尔表达式。 布尔表达式的创建由用户拖放表示数据元素(操作数)和操作(运算符)以及评估顺序的对象来执行。 在另一实施例中,系统被配置为允许系统的用户利用下拉菜单和选择选项来进一步创建和修改布尔表达式。 所创建的表达可以随后被用作业务流程的一部分以实现期望的输出或获得期望的结果。
    • 39. 发明申请
    • 3D Autostereoscopic Display System With Multiple Sets Of Stereoscopic Views
    • 具有多组立体视图的3D自动立体显示系统
    • US20110063575A1
    • 2011-03-17
    • US12818007
    • 2010-06-17
    • Bradley NelsonLowell A. NobleMellissa Noble Asmussen
    • Bradley NelsonLowell A. NobleMellissa Noble Asmussen
    • G02B27/22
    • H04N13/363H04N13/305
    • Multiple sets of view channels originate from multiple projected views modulated through an optic assembly comprising a Fresnel lens, a vertical dispersion lenticular lens, and a diffuser. Compact projection enclosures are formed using image-repeating mirrors to create a three-dimensional autostereoscopic viewing experience in free space without the use of special eyeglasses and without the use of view screens. Multiple sets of images are repeated within a viewing zone that may extend well beyond the confines of the enclosure and may be projected through and beyond a glass window. An observer walking past the window will see one view channel per eye, due in part to the repeated images, and due in part to the vertical dispersion of each projected view. Separate images for each view channel may be created by using two or more cameras spaced apart at a distance interval to match the average horizontal distance between the eyes of a human observer. Multiple views or multiple sets of view channels may be generated and projected.
    • 多组视图通道源自通过包括菲涅尔透镜,垂直色散双凸透镜和扩散器的光学组件调制的多个投影视图。 使用图像重复镜形成紧凑的投影外壳,以在自由空间中创建三维自动立体观看体验,而不使用特殊的眼镜,而不使用观看屏幕。 在观察区域内重复多组图像,其可以远远超出外壳的范围,并且可以投影穿过玻璃窗和玻璃窗。 走过窗户的观察者将会看到每个眼睛的一个视图通道,部分原因在于重复的图像,部分原因在于每个投影视图的垂直分散。 可以通过使用以距离间隔间隔开的两个或更多个照相机来匹配人类观察者的眼睛之间的平均水平距离来创建每个视图通道的分离图像。 可以生成和投影多个视图或多组视图通道。
    • 40. 发明申请
    • WIRELESS RESONANT MAGNETIC ACUTATION FOR UNTETHERED MICROROBOTS
    • 无线通信微波无线共振磁共振
    • US20100264776A1
    • 2010-10-21
    • US12667162
    • 2008-06-30
    • Karl VollmersDominic FrutigerBradley KratochvilBradley Nelson
    • Karl VollmersDominic FrutigerBradley KratochvilBradley Nelson
    • H02N11/00
    • H02K33/00H02K99/00H02K2201/18
    • The invention concerns a novel magnetic actuator mechanism suitable for use on untethered microrobots. It relies on the interaction of magnetic bodies in an external magnetic field. By an oscillating field, the bodies are driven to oscillatory motion, and the energy stored in the oscillation is harnessed. The untethered wireless microactuator according to the invention comprises a mechanical system with at least two magnetic bodies resiliently connected to one another, wherein the mechanical system is capable of being oscillated, in particular driven to resonance, by an oscillating external magnetic field. The actuation system according to the invention comprises such a microrobot as well as a magnetic field generator with adjustable field direction and oscillation frequency. The actuation method comprises exciting two or more magnetic bodies with an oscillating magnetic field such that they perform mechanical oscillations, and harnessing this energy for propulsion of the device or to fulfill other tasks.
    • 本发明涉及一种新颖的磁致动器机构,适用于无阻尼微型机器人。 它依赖于磁体在外部磁场中的相互作用。 通过振荡场,机体被驱动到振荡运动,并且利用存储在振荡中的能量。 根据本发明的无捆绑式无线微型致动器包括具有彼此弹性连接的至少两个磁体的机械系统,其中机械系统能够通过振荡的外部磁场而被振荡,特别是被驱动以进行谐振。 根据本发明的致动系统包括这种微型机器人以及具有可调的场方向和振荡频率的磁场发生器。 致动方法包括激励具有振荡磁场的两个或更多个磁体,使得它们执行机械振荡,并利用该能量来推动装置或完成其它任务。