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    • 81. 发明申请
    • STAR FIELD PROJECTION APPARATUS
    • STAR FIELD投影设备
    • WO2008100275A1
    • 2008-08-21
    • PCT/US2007/015308
    • 2007-06-28
    • LEE, Alan
    • LEE, Alan
    • G09B27/00G09B27/04
    • G03B21/26G09B27/00G09B27/02G09B27/04
    • A projection apparatus for generating a moving star field and a cloud-like effect comprises a means for generating a cloud-like effect using at least one non¬ coherent light source, a means for generating a moving star field using at least one coherent light source and a means for regulating and supplying electric power. The means for generating cloud-like effect using at least one non-coherent light source comprises at least one pair of condenser lenses and an interferential filter wheel rotated by a motor, disposed between at least one pair of condenser lenses. The means for generating the moving star field using a coherent light source comprises a grating wheel rotated by a motor and a diffractive optical element disposed between the at least one coherent light source and the grating wheel.
    • 用于产生移动星形场和云状效应的投影装置包括用于使用至少一个非相干光源产生云样效应的装置,使用至少一个相干光源产生移动星形场的装置 以及用于调节和供电的装置。 用于使用至少一个非相干光源产生云状效应的装置包括至少一对聚光透镜和由电动机旋转的干涉滤光轮,所述干涉滤光轮设置在至少一对聚光透镜之间。 使用相干光源产生移动星形场的装置包括由电动机旋转的光栅轮和设置在至少一个相干光源和光栅轮之间的衍射光学元件。
    • 82. 发明申请
    • GLOBE WITH MAP DETAIL DISPLAY
    • GLOBE WITH MAP DETAIL显示
    • WO2005043488A1
    • 2005-05-12
    • PCT/US2004/034289
    • 2004-10-18
    • BLUM, Alvin, S.
    • BLUM, Alvin, S.
    • G09B27/08
    • G09B27/02G09B27/00G09B27/08G09B29/00
    • A spherical world globe (4') with geographic features imprinted on its surface rotates on an axis (2') through the poles. The sphere is not large enough to carry legible details of all areas. Greater details are stored in a memory (12') such as a compact disc. An indicator (8') on the sphere is positionable north and south or the sphere is positionable relative to a fixed indicator to position the indicator along a north/south meridian . A sensor (11') senses the north/south position of the indicator and sends a signal to a control circuit (19) connected to the memory. Another sensor (10') connected to the rotation of the sphere sends an east/west signal to the control circuit. Using the two signals, the circuit finds the area corresponding to the area selected on the sphere in the memory and displays it on a display in greater detail than is visible on the sphere.
    • 具有印刷在其表面上的地理特征的球形世界地球仪(4')通过极点在轴线(2')上旋转。 球体不够大,无法携带所有领域的清晰细节。 较大的细节存储在诸如光盘的存储器(12')中。 球体上的指示器(8')可以定位在北部和南部,或者球体可相对于固定指示器定位,以将指示器沿着北/南经线定位。 传感器(11')感测指示器的北/南位置,并向连接到存储器的控制电路(19)发送信号。 连接到球体的旋转的另一传感器(10')向控制电路发送东/西信号。 使用两个信号,电路找到与存储器中球体上选择的区域相对应的区域,并将其显示在比球体上可见的更详细的显示屏上。
    • 84. 发明专利
    • Curved-surface body for information input, map for information input, and drawing for information input
    • 用于信息输入的曲面表面体,用于信息输入的地图和用于信息输入的绘图
    • JP2011141705A
    • 2011-07-21
    • JP2010001589
    • 2010-01-06
    • Kenji Yoshida健治 吉田
    • YOSHIDA KENJI
    • G06K19/06G06F3/042G09B23/28G09B27/00G09B27/06G09B27/08G09B29/02G09B29/10
    • G09B27/02G09B29/10
    • PROBLEM TO BE SOLVED: To solve the problem that it is not possible to obtain any latitude and longitude information or any information relating to this from a curved-surface body in a conventional dot pattern technology, and the problem that since it is necessary to read coordinate information and/or code information from the neighborhood of a segment plotted on a map and a drawing, and it is necessary to manually define a region including the segment in order to obtain information associated with the segment, and it is necessary to form a dot pattern with which the pertinent information is associated in the region, labors, time, and costs grow huge, and when those segments are adjacent to each other, it is not possible to secure any sufficient region, and it is not possible to define the information to the segment with accuracy. SOLUTION: A plurality of stream dot patterns with little moire being stripe-shaped cyclic patterns formed on the basis of a prescribed rule are connected and formed like a band, so that it is possible to create a medium for information input capable of defining accurate latitude and longitude information and coordinate information to a curved-surface body or various segments plotted on a map and drawing. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了解决常规点阵图形技术中不能从曲面体获得任何纬度和经度信息或与此有关的任何信息的问题,以及由于它是 从图上绘制的段的附近读取坐标信息和/或代码信息是必需的,并且需要手动定义包括该段的区域以获得与该段相关联的信息,并且这是必要的 形成相关信息与该区域相关联的点图案,劳动力,时间和成本变得巨大,当这些分段彼此相邻时,不可能确保任何足够的区域,并且不可能 以准确的方式将信息定义到细分。 解决方案:基于规定的规则形成的具有小的莫尔条纹状循环图案的多个流点图案被连接并形成为类似于带,从而可以创建用于信息输入的介质,其能够 定义精确的纬度和经度信息,并将坐标信息映射到绘制在地图和绘图上的曲面体或各种段。 版权所有(C)2011,JPO&INPIT
    • 85. 发明专利
    • Entire-visual-field projection device, and entire-visual-field image system
    • 全视觉投影设备和全视觉图像系统
    • JP2010015128A
    • 2010-01-21
    • JP2008333126
    • 2008-12-26
    • Akira Yoshii暁 吉井
    • YOSHII AKIRA
    • G03B21/00G03B15/00G03B17/17G03B21/56G03B37/00H04N5/74
    • G03B21/10G02B13/06G02B13/16G03B37/00G09B9/32G09B27/02
    • PROBLEM TO BE SOLVED: To provide an entire-visual-field projection device capable of reproducing a true entire-visual-field-image, regardless of a simple configuration and to provide an entire-visual-field image system.
      SOLUTION: The entire-visual-field projection device 20 which projects image information relating to an entire-visual-field image onto a spherical screen 23 to provide the entire-visual-field image to a viewer positioned inside the screen. The projection device includes the spherical screen 23, a pair of projectors 21A and 21B which project the entire-visual-field image onto the screen 23 and are arranged opposite each other with the center of the screen 23 therebetween, and a double-convex mirror for projection 22 which reflects luminous fluxes from the projectors 21A and 21B toward the screen and is disposed in the vicinity of the center of the screen 23. A projection luminous flux from one of the projectors 21A and 21B is emitted to one of the convex surfaces of the double-convex mirror for projection 22, and that from the other projector to the other convex surface of the double-convex mirror for projection 22.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供能够再现真正的全视场图像的整个视野​​投影设备,而不管简单的配置,并提供整个视野图像系统。 解决方案:整个视野投影设备20将与整个视野图像相关的图像信息投影到球形屏幕23上,以向位于屏幕内的观看者提供整个视野图像。 投影装置包括球形屏幕23,一对投影仪21A和21B,其将整个视野图像投影到屏幕23上,并且彼此相对地布置有屏幕23的中心,并且双凸面镜 用于将来自投影仪21A和21B的光通量反射到屏幕并且设置在屏幕23的中心附近的投影22.来自一个投影仪21A和21B的投影光束被发射到一个凸表面 用于突起22的双凸面镜,以及从另一个投影仪到用于突出物22的双凸面镜的另一个凸面。另外,(C)2010,JPO&INPIT
    • 86. 发明专利
    • Planetarium video generating device and its video generating method
    • PLANETARIUM视频生成设备及其视频生成方法
    • JP2007139998A
    • 2007-06-07
    • JP2005332289
    • 2005-11-17
    • Konica Minolta Planetarium Co Ltdコニカミノルタプラネタリウム株式会社
    • SUDA MASAKI
    • G09B27/00G06T3/00
    • G06T13/00G06T15/04G09B27/02
    • PROBLEM TO BE SOLVED: To provide a planetarium video generating device capable of displaying both video representing the state of circumferential space in real time and a surface pattern of an astronomical body of takeoff and landing with high quality when producing takeoff from and landing on a surface of the astronomical body. SOLUTION: The planetarium device of the present invention stores a plurality of texture image data representing the state of the surface of the object in a video memory 23 while relating them to ranges of distances from viewpoints to the object. According to the distance from a viewpoint to the object, one texture image data is read out of the video memory 23 and a texture image based upon the read-out texture image data is sized to the area of the whole image that the object occupies and pasted thereupon. Further, the rest of the whole image is represented as a real-time image. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种天文馆视频产生装置,其能够实时显示代表周围空间状态的视频和高质量的天文体的起飞和着陆的表面图案,当产生起飞和着陆时 在天文体的表面。 解决方案:本发明的天文馆装置将表示物体表面的状态的多个纹理图像数据存储在视频存储器23中,同时将它们与从视点到对象的距离范围相关联。 根据从视点到物体的距离,从视频存储器23读出一个纹理图像数据,并且基于读出的纹理图像数据的纹理图像的大小被调整为对象占据的整个图像的区域, 粘贴在那里 此外,整个图像的其余部分被表示为实时图像。 版权所有(C)2007,JPO&INPIT
    • 90. 发明申请
    • PLANETARY WAVY ORBIT SIMULATOR
    • 商业波形轨迹模拟​​器
    • WO2014068549A2
    • 2014-05-08
    • PCT/IB2014000305
    • 2014-03-11
    • ALSHDAIFAT WASFIALMUHAIRBI EIDAKASSAB FARAH AFIF
    • ALSHDAIFAT WASFI
    • G09B23/08
    • G09B23/08G09B27/02G09B27/06G09B27/08
    • To provide a machine (20) to simulate the actual wavy motion of the Earth (27) around the Sun (23), The simulator machine (20) consists of a fluid basin (22), containing a motorized cart (28) providing the Sun's forward movement, and carrying it at the top via a rotatable shaft (29). The fluid is transmitting the rotation of the Sun (23) toward the Earth (27), the forward movement and rotation of the Sun (23), rotates the fluid around the Sun (23) and decreases its pressure, the high pressure static fluid from behind the Earth (27) pushes it toward the Sun (23) due to the pressure difference, while the rotated fluid around the Earth (27) pushes it vertically outward. The resultant pushes of the two pressures pushes the Earth (27) tangent to the first elliptic track around the Sun (23), but as the Sun (23) is moving forward, the 2nd half of elliptic followed by the Earth (27), will be shifted forward, creating with the first half a wave.
    • 为了提供机器(20)来模拟围绕太阳(23)的地球(27)的实际波浪运动,模拟器机器(20)由流体池(22)组成,其包含电动推车(28),其提供 太阳的向前运动,并通过可旋转轴(29)将其运送到顶部。 流体正在将太阳(23)的旋转传递到地球(27),太阳(23)的向前运动和旋转使得流体绕太阳(23)旋转并降低其压力,高压静态流体 从地球后面(27)由于压差而将其推向太阳(23),而围绕地球旋转的流体(27)将其垂直向外推动。 所产生的两个压力的推动推动地球(27)与太阳(23)周围的第一个椭圆轨迹相切,但是随着太阳(23)向前移动,椭圆的后半部分是地球(27), 将向前移动,创造了上半场的一波。