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    • 12. 发明申请
    • Wireless Communication System
    • 无线通信系统
    • US20080273484A1
    • 2008-11-06
    • US10597281
    • 2005-01-20
    • Hirotaka FukutsukaHiroshi KondoShinichi Ogo
    • Hirotaka FukutsukaHiroshi KondoShinichi Ogo
    • H04Q7/00
    • H04W74/06H04W36/30
    • It is an object of the present invention to provide a wireless communication system, which ensures that communication can be maintained in an excellent status although a mobile wireless station may be moved in a service area. A CPU (210) of a mobile wireless station (2) in process of transmission is operated to causes a receiving circuit (202) to periodically notify the CPU (210) of the electric field intensity of a received radio wave. When the electric field intensity of the received radio wave becomes lower than a predetermined value, the CPU (210) is operated to judge the distance from a base station (1), with which the mobile wireless station (2) is currently communicating, is increased, and the CPU (210) is operated to control the receiving circuit (202) to receive radio waves on transmission frequencies of base stations (1) other than the base station (1) and detect the electric field intensities of the received radio waves. Then, the CPU (210) is operated to control the receiving circuit (202) to receive the radio wave of the base station (1) which is the strongest in the electric field intensity of the radio wave among the base stations (1). When the data of a DTMF signal of the radio wave is indicative of “transmission permitted”, the CPU (210) is operated to control the receiving circuit (202) to switch to the base station (1) for communication. When, on the other hand, the data of the DTMF signal of the radio wave is indicative of “transmission inhibited”, the CPU (210) is operated to control the receiving circuit (202) to receive radio waves of the base stations in order of decreasing electric field intensity of the radio wave, and switch to the base station (1) which transmits DTMF signal having data indicative of “transmission permitted”.
    • 本发明的目的是提供一种无线通信系统,其可以确保尽管可以在服务区域中移动移动无线站,但是可以将通信维持在良好的状态。 操作在传输过程中的移动无线站(2)的CPU(210)使得接收电路(202)周期性地通知CPU(210)所接收的无线电波的电场强度。 当接收的无线电波的电场强度变得低于预定值时,CPU(210)被操作以判断与移动无线站(2)当前正在通信的基站(1)的距离是 并且CPU(210)被操作以控制接收电路(202)在基站(1)之外的基站(1)的发送频率上接收无线电波,并且检测所接收的无线电波的电场强度 。 然后,CPU(210)被操作以控制接收电路(202)接收在基站(1)中无线电波的电场强度中最强的基站(1)的无线电波。 当无线电波的DTMF信号的数据表示“允许传输”时,CPU(210)被操作以控制接收电路(202)切换到基站(1)进行通信。 另一方面,当无线电波的DTMF信号的数据表示“禁止传输”时,CPU(210)被操作以控制接收电路(202)按顺序接收基站的无线电波 降低无线电波的电场强度,并切换到发送具有指示“允许发送”的数据的DTMF信号的基站(1)。
    • 13. 发明授权
    • Image sensing apparatus, image sensing method, program, and storage medium
    • 图像感测装置,图像感测方法,程序和存储介质
    • US07433099B2
    • 2008-10-07
    • US10425258
    • 2003-04-29
    • Hiroshi Kondo
    • Hiroshi Kondo
    • H04N1/46
    • H04N9/735H04N1/6077
    • An object of this invention is to quickly complete white balance calculation in photographing. To achieve this object, an image sensing apparatus includes an image sensing element in which a line on which first and second color filters are arranged and a line on which first and third color filters are arranged are alternately arrayed on pixels, an image sensing controller which forms an image of one frame by n fields (n is an odd number), and reads out pixel data of the image sensing element so as to contain all color components in each 1-field period, a white balance calculation device which performs process on the basis of image data read out from the image sensing element by the image sensing controller, and starts the process before read of one frame from the image sensing element is completed by the image sensing controller.
    • 本发明的目的是快速完成拍摄中的白平衡计算。 为了实现该目的,图像感测装置包括:图像感测元件,其中布置有第一和第二滤色器的线和布置有第一和第三滤色器的线交替排列在像素上;图像感测控制器, 形成一帧×n场(n为奇数)的图像,并且读出摄像元件的像素数据,以便包含每个1场周期中的所有颜色分量;执行处理的白平衡计算装置 由图像感测控制器从图像感测元件读出的图像数据的基础,并且通过图像感测控制器完成从图像感测元件读取一帧之前开始的处理。
    • 14. 发明申请
    • Multi-CPU computer and method of restarting system
    • 多CPU计算机和重启系统的方法
    • US20080010506A1
    • 2008-01-10
    • US11879390
    • 2007-07-17
    • Ryo TabeiHiroshi Kondo
    • Ryo TabeiHiroshi Kondo
    • G06F11/00
    • G06F11/0793G06F11/0724G06F11/0775G06F11/0778G06F11/0784G06F11/1438
    • A multi-CPU computer which is capable of positively performing error handling, and restarting a system even when a fatal error has occurred in a CPU. When a hardware error has occurred in a first CPU, error information is notified to a second CPU by a first error notification circuit of the first CPU. Then, the error information notified from the first CPU is obtained by a second error notification circuit of the second CPU, and error handling based on the error information is requested of an operating system. The second CPU executes a process for storing fault information including the error information in a storage device and a process for restarting the system, according to the operating system.
    • 能够积极执行错误处理的多CPU计算机,即使在CPU发生致命错误时也重新启动系统。 当在第一CPU中发生硬件错误时,由第一CPU的第一错误通知电路将错误信息通知给第二CPU。 然后,通过第二CPU的第二错误通知电路获得从第一CPU通知的错误信息,并且请求操作系统的基于错误信息的错误处理。 第二CPU根据操作系统执行用于将包括错误信息的故障信息存储在存储设备中的过程和用于重新启动系统的处理。
    • 16. 发明授权
    • Apparatus, program and method for detecting both stationary objects and moving objects in an image using optical flow
    • 用于使用光流检测图像中的静止物体和移动物体的装置,程序和方法
    • US07062071B2
    • 2006-06-13
    • US10322307
    • 2002-12-17
    • Hiroshi TsujinoHiroshi KondoAtsushi MiuraShinichi NagaiKoji Akatsuka
    • Hiroshi TsujinoHiroshi KondoAtsushi MiuraShinichi NagaiKoji Akatsuka
    • G06K9/00
    • G06T7/269G06T7/215G06T7/262G06T7/74G06T2207/30241
    • An object detection apparatus is provided for detecting both stationary objects and moving objects accurately from an image captured from a moving mobile unit.The object detection apparatus of the present invention applies Gabor filter to two or more input images captured by an imaging device such as CCD camera mounted on a mobile unit, and calculates optical flow of local areas in the input images. Then the object detection apparatus closely removes optical flow produced by motion of the mobile unit by estimating optical flow produced from background of the input images. In other words, the object detection apparatus clarifies the area where object is not present (“ground”) in the input images. By removing such “ground” part, the area where objects seems to be present (“feature”) is extracted from the input images. Finally, the object detection apparatus determines whether objects are present or not using flow information of the extracted “feature” part.
    • 提供一种物体检测装置,用于从移动的移动单元捕获的图像中精确地检测静止物体和移动物体。 本发明的对象检测装置将Gabor滤波器应用于由安装在移动单元上的CCD摄像机等摄像装置拍摄的两个以上的输入图像,并计算输入图像中局部区域的光流。 然后,物体检测装置通过估计从输入图像的背景产生的光流来紧密地去除由移动单元的运动产生的光流。 换句话说,对象检测装置说明输入图像中不存在对象(“接地”)的区域。 通过移除这样的“地面”部分,从输入图像中提取对象似乎存在的区域(“特征”)。 最后,对象检测装置使用提取的“特征”部分的流信息来确定对象是否存在。
    • 17. 发明授权
    • Method of producing laminated food and a device thereof and laminated cheese food thereby produced
    • 生产层压食品的方法及其装置以及由此制得的层压干酪食品
    • US07005153B1
    • 2006-02-28
    • US09675671
    • 2000-09-29
    • Yoshito ShibauchiHiroshi KondoHiroshi AoyamaMasayuki Goda
    • Yoshito ShibauchiHiroshi KondoHiroshi AoyamaMasayuki Goda
    • A23C19/09
    • A23C19/0908A23P20/20
    • Fluid food materials which solidify when cooled are quantitatively supplied successively at a certain thickness in a plate form on cooling and carrying sides; of two cooling and carrying devices, cooled while being carried to form two monolayer platy food materials, and the two platy food materials are bonded and united making use of the surface not yet completely cooled and solidified of the monolayer platy food materials, and thereby producing a layered laminated cheese food and the like consisting of two layers. In order to obtain a three-or-more-layer laminated structure, the fluid food materials which solidify when cooled are quantitatively supplied successively at a certain thickness in a plate form on the cooling and carrying sides of the cooling and carrying devices, cooled while being carried to form monolayer platy food materials, or if necessary, more fluid food materials which solidify when cooled are quantitatively supplied successively at a certain thickness in a plate form over the platy food materials, cooled while being carried, thereby forming multilayer platy food materials, and/or the platy food materials are bonded and united to form multilayer platy food materials, and the fluid food materials are quantitatively supplied successively between the two monolayer and/or multilayer platy food materials in order to unite the two platy food materials and the fluid food materials comprising the layers between the two platy food materials.
    • 在冷却时固化的流体食品材料在冷却和携带侧面以板形式依次定量供应; 的两个冷却和携带装置,在被携带以形成两个单层片状食品材料的同时冷却,并且使用两个平板状食品材料,使用单层片状食品的表面尚未完全冷却和固化,从而产生 由两层组成的分层层压干酪食品等。 为了获得三层或更多层的层压结构,冷却时固化的流体食品材料以冷却和携带装置的冷却和携带侧面依次以一定厚度连续地供应,冷却和冷却 被携带以形成单层板状食品材料,或者如果需要,在冷却时固化的更流动的食品材料以片状形式连续地以板形式连续地供应在板状食品材料上,在被携带时冷却,从而形成多层片状食品材料 和/或板状食品材料结合并结合以形成多层板状食品材料,并且流体食品材料在两个单层和/或多层板状食品材料之间相继定量供应,以便将两种板状食品材料和 流体食品材料包括两片平板状食品之间的层。