会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Omnidirectional imaging system
    • 全方向成像系统
    • US09244258B2
    • 2016-01-26
    • US13391667
    • 2011-06-24
    • Akio NishimuraTetsuro OkuyamaYasushi Yagi
    • Akio NishimuraTetsuro OkuyamaYasushi Yagi
    • H04N7/18G02B13/06G02B17/06G03B37/06H04N5/225H04N5/232
    • G02B13/06G02B17/061G03B37/06H04N5/2259H04N5/23238
    • To enable an image with no blind spot area to be obtained while ensuring a wide field of view, an omnidirectional imaging system includes: a primary mirror (101) including a hyperbolic mirror; a plurality of secondary mirrors (102) arranged around the primary mirror and each including a hyperbolic mirror; and a camera (104) that captures an image reflected by the primary mirror and images reflected by the plurality of secondary mirrors. A hyperboloid of the primary mirror and hyperboloids of the plurality of secondary mirrors have a substantially coincident outer focal point, and the camera (104) is placed so that a viewpoint of the camera substantially coincides with the outer focal point of the hyperboloid of the primary mirror (101) and the hyperboloids of the plurality of secondary mirrors (102), the viewpoint of the camera being an entrance pupil position of a lens attached to the camera (104).
    • 为了在确保宽视场的同时能够获得没有盲区的图像,全向成像系统包括:主镜(101),包括双曲面镜; 多个辅助反射镜(102),其布置在主镜周围并且每个包括双曲面镜; 以及拍摄由主反射镜反射的图像和由多个次反射镜反射的图像的照相机(104)。 多个次级反射镜的主镜和双曲面的双曲面具有基本上重合的外焦点,并且相机(104)被放置成使得照相机的视点基本上与主要的双曲面的外焦点重合 反射镜(101)和多个次级反射镜(102)的双曲面,相机的视点是附接到相机(104)的透镜的入射光瞳位置。
    • 4. 发明申请
    • MOVING OBJECT DETECTION DEVICE
    • 移动物体检测装置
    • US20130094759A1
    • 2013-04-18
    • US13805527
    • 2011-06-20
    • Yasushi YagiYasushi MakiharaChunsheng Hua
    • Yasushi YagiYasushi MakiharaChunsheng Hua
    • G06K9/32
    • G06K9/3241G06K9/00369G06K9/00771G06K9/4647G06K2009/3291G06T7/215G06T7/269G06T2207/30196
    • A moving object detection device includes a window setting unit configured to set a window having a predetermined volume in a video, an orientation of spatial intensity gradient calculation unit configured to calculate, for each pixel included in the window, an orientation of spatial intensity gradient, a spatial histogram calculation unit configured to calculate a spatial histogram that is a histogram of the orientation of spatial intensity gradient within the window, an orientation of temporal intensity gradient calculation unit configured to calculate, for each pixel included in the window, an orientation of temporal intensity gradient, a temporal histogram calculation unit configured to calculate a temporal histogram that is a histogram of an orientation of temporal intensity gradient within the window, and a determination unit configured to determine whether or not the moving object is included within the window based on the spatial histogram and the temporal histogram.
    • 移动物体检测装置包括:窗口设定单元,其被配置为在视频中设置具有预定体积的窗口;空间强度梯度计算单元的方向,被配置为针对包括在窗口中的每个像素计算空间强度梯度的方向, 空间直方图计算单元,被配置为计算作为窗口内的空间强度梯度的取向的直方图的空间直方图,时间强度梯度计算单元的方位被配置为针对包括在窗口中的每个像素计算时间方向 强度梯度,时间直方图计算单元,其被配置为计算作为窗口内的时间强度梯度的取向的直方图的时间直方图;以及确定单元,被配置为基于所述窗口中的所述窗口来确定所述移动对象是否包括在所述窗口内 空间直方图和时间直方图。
    • 8. 发明授权
    • Heat treatment method and apparatus thereof
    • 热处理方法及其装置
    • US5429498A
    • 1995-07-04
    • US987024
    • 1992-12-07
    • Wataru OkaseYasushi YagiSatoshi Kawachi
    • Wataru OkaseYasushi YagiSatoshi Kawachi
    • C23C16/458C23C16/46C23C16/48C30B25/10C30B25/12C30B31/12C30B31/14H01L21/00H01L21/205H01L21/314H01L21/677F27D3/12
    • H01L21/67109C23C16/4583C23C16/46C23C16/463C23C16/481C30B25/10C30B25/12C30B31/12C30B31/14H01L21/67115H01L21/67745H01L21/67751
    • The present invention relates to a thermal processing method wherein a cylindrical process tube that has at one end an entrance/exit is provided at the other end thereof with a heat source, and thermal processing is performed on a workpiece which has been brought in from the entrance/exit of the process tube to a prescribed position therein. This thermal processing method and an apparatus therefor is characterized in that, when the workpiece is moved to the prescribed position, it is first moved to a proximity position that is closer to the heat source than the prescribed position, then it is returned therefrom to the prescribed position. The invention is further characterized in that, if the actual processing temperature at the prescribed position changes while the workpiece is undergoing thermal processing, the workpiece is moved such that the position of the workpiece with respect to the heat generation source is changed in order to return the processing temperature at the prescribed position to the prescribed processing temperature. This ensures that the temperature of the workpiece can be rapidly raised to the prescribed processing temperature and also that, if the temperature of the workpiece should change, it can be rapidly returned to the prescribed processing temperature.
    • 本发明涉及一种热处理方法,其中在一端具有入口/出口的圆柱形处理管在其另一端设置有热源,并且对从已经从 处理管的入口/出口到其中的规定位置。 这种热处理方法及其装置的特征在于,当工件移动到规定位置时,首先将其移动到比规定位置更靠近热源的接近位置,然后从其返回到 规定的位置。 本发明的特征还在于,如果在工件进行热加工时在规定位置处的实际加工温度变化,则工件被移动,使得工件相对于发热源的位置改变以返回 在规定位置处理温度达规定处理温度。 这样可以确保工件的温度快速提高到规定的加工温度,而且如果工件的温度变化,则可以迅速地恢复到规定的加工温度。
    • 9. 发明授权
    • Image processing device, image processing method, and program
    • 图像处理装置,图像处理方法和程序
    • US08837812B2
    • 2014-09-16
    • US12997088
    • 2009-06-04
    • Hiroshi KawasakiRyo FurukawaRyusuke SagawaYasushi Yagi
    • Hiroshi KawasakiRyo FurukawaRyusuke SagawaYasushi Yagi
    • G06K9/00G06T1/00G01B11/25G06T7/00
    • G01B11/25G06T1/00G06T7/521G06T2200/08G06T2207/10028
    • Provided are an image processing device, an image processing method, and a program which are capable of high density restoration and which are also strong to image processing. An image processing device mainly consists of a projector serving as a projection means, a camera as a photographing means, and an image processing means consisting of, for example, a personal computer. The image processing means acquires the intersection point between patterns from a photographed image and calculates a first solution including degree of freedom by using the constraint condition of a first tentative plane and a second tentative plane including the intersection point and the constraint condition obtained from the positional relationship between the projector and the camera. The degree of freedom is cancelled by primary search, thereby restoring a three-dimensional shape.
    • 提供能够进行高密度恢复并且对于图像处理也很强的图像处理装置,图像处理方法和程序。 图像处理装置主要由用作投影装置的投影仪,作为拍摄装置的照相机和由例如个人计算机组成的图像处理装置组成。 图像处理装置从拍摄图像获取图案之间的交点,并且通过使用第一临时平面的约束条件和包括从该位置获得的交点和约束条件的第二临时平面来计算包括自由度的第一解 投影机和相机之间的关系。 通过主要搜索取消自由度,从而恢复三维形状。