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    • 3. 发明授权
    • Method and device for data transmission and reception using transmission pause state as reception timing
    • 使用传输暂停状态作为接收定时的数据发送和接收的方法和装置
    • US06205156B1
    • 2001-03-20
    • US08949377
    • 1997-10-14
    • Tomoki WatanabeHironobu FukunagaKeiko KumagaiKazuhiro HayakawaTatsuo SuzukiKatsumi KishidaKazuo Tanaka
    • Tomoki WatanabeHironobu FukunagaKeiko KumagaiKazuhiro HayakawaTatsuo SuzukiKatsumi KishidaKazuo Tanaka
    • H04L12413
    • H04M11/085H04L29/06H04L29/06027H04L69/08
    • A data transmission and reception scheme capable of reducing required devices in the data transmission and reception system for an economical advantage, realizing the concurrent data delivery to a plurality of data reception devices, and allowing each one of a plurality of data reception devices to start the data reception at arbitrary timing. In a system for transmitting data from a data transmission device to unspecified many data reception devices that make asynchronous connections, the data transmission device carries out the repetitive transmission by repeating the operations of transmitting a prescribed amount of data to be transmitted by applying a prescribed signal conversion and then pausing the signal conversion processing for a prescribed period of time so as to provide a transmission pause state in the transmission signals which is to be utilized as a reception timing at each data repcetion device. At each data reception device, the transmission pause state in the transmission signals are detected at an arbitrary timing, and the reception of the transmission data is started by using the detected transmission pause state as the reception timing.
    • 一种数据发送和接收方案,其能够以经济的方式减少数据发送和接收系统中的所需设备,实现向多个数据接收设备的并发数据传送,并允许多个数据接收设备中的每一个启动 数据接收任意时间。 在从数据发送装置发送数据到未指定进行异步连接的多个数据接收装置的系统中,数据发送装置通过应用规定的信号重复发送规定数量的要发送的数据的动作来进行重复发送 转换,然后在规定的时间段内暂停信号转换处理,以便在要用作每个数据记录装置的接收定时的发送信号中提供发送暂停状态。 在每个数据接收装置处,在任意定时检测发送信号中的发送暂停状态,并且通过使用检测到的发送暂停状态作为接收定时来开始发送数据的接收。
    • 5. 发明授权
    • Camera device, communication system, and camera system
    • 相机设备,通信系统和相机系统
    • US09285868B2
    • 2016-03-15
    • US13728592
    • 2012-12-27
    • Tomoki WatanabeRyuzo Okada
    • Tomoki WatanabeRyuzo Okada
    • H04N5/225H04N5/228G06K9/54G06F3/00G06F17/30G06F21/00G06F21/36H04W12/06H04L29/06
    • G06F3/005G06F17/30247G06F21/00G06F21/36H04L63/0861H04W12/06
    • An example camera device includes an image capturing unit configured to capture an image, and a storage unit configured to store first attribute information of a target object used for identifying the target object from the image. The camera device also includes an identification unit, a requesting unit, and a storage control unit. The identification unit is configured to identify the target object in the image captured by the image capturing unit based on the first attribute information. The requesting unit is configured to request an external device to identify the target object when the identification unit is not able to identify the target object. The storage control unit is configured to receive second attribute information of the target object from the external device that is requested to identify the target object, and control the storage unit to store the second received attribute information.
    • 示例性相机装置包括被配置为捕获图像的图像捕获单元和被配置为存储用于从图像识别目标对象的目标对象的第一属性信息的存储单元。 相机装置还包括识别单元,请求单元和存储控制单元。 识别单元被配置为基于第一属性信息来识别由图像捕获单元捕获的图像中的目标对象。 请求单元被配置为当识别单元不能识别目标对象时,请求外部设备识别目标对象。 存储控制单元被配置为从被请求识别目标对象的外部设备接收目标对象的第二属性信息,并且控制存储单元以存储第二接收到的属性信息。
    • 6. 发明授权
    • Method and apparatus for calculating pixel features of image data
    • 用于计算图像数据的像素特征的方法和装置
    • US08447114B2
    • 2013-05-21
    • US12536668
    • 2009-08-06
    • Tomoki WatanabeSatoshi ItoKentaro Yokoi
    • Tomoki WatanabeSatoshi ItoKentaro Yokoi
    • G06K9/46G06K9/66
    • G06K9/6202
    • A feature extracting apparatus includes a pixel feature calculator that calculates a pixel feature for each pixel of image data; an area setting unit configured to set a plurality of areas in the image data; a coordinate mapping unit configured to map a first coordinate in one of the plurality of areas onto a second coordinate in at least one of the other plurality of areas; and a co-occurrence matrix calculator configured to calculate a co-occurrence matrix for each of the plurality of areas, the co-occurrence matrix being frequency of combinations of the pixel features at the first coordinate and the pixel feature at the second coordinates.
    • 特征提取装置包括像素特征计算器,其计算图像数据的每个像素的像素特征; 区域设定单元,被配置为设置图像数据中的多个区域; 坐标映射单元,被配置为将所述多个区域中的一个区域中的第一坐标映射到所述其他多个区域中的至少一个区域中的第二坐标; 以及共同矩阵计算器,被配置为计算所述多个区域中的每一个的同现矩阵,所述同现矩阵是所述第一坐标处的像素特征和所述第二坐标处的像素特征的组合的频率。
    • 9. 发明申请
    • IMAGE DISPLAY APPARATUS AND METHOD
    • 图像显示装置和方法
    • US20090219296A1
    • 2009-09-03
    • US12393270
    • 2009-02-26
    • Tomoki Watanabe
    • Tomoki Watanabe
    • G09G5/02
    • G09G5/02G09G2310/0235
    • A display image of a frame is input in time series. An inverse colored image to cancel the display image is generated. The display image is divided into a plurality of subfields, and the inverse colored image is also divided into a plurality of subfields. A time divisional image is generated by disposing a display time of a subfield of the inverse colored image before and after a display time of a corresponding subfield of the display image. While displaying the time divisional image on a screen, a light from the screen is transmitted in synchronization with display timing of the display image in a display time of the time divisional image, and the light is cut off in synchronization with display timing of the inverse colored image in the display time of the time divisional image.
    • 以时间序列输入帧的显示图像。 生成用于取消显示图像的反彩色图像。 显示图像被分成多个子场,并且反色彩图像也被划分为多个子场。 通过在显示图像的相应子场的显示时间之前和之后设置反彩色图像的子场的显示时间来生成时分图像。 当在屏幕上显示分时图像时,在时分图像的显示时间内,与显示图像的显示定时同步地发送来自屏幕的光,并且与反相的显示定时同步地切断光 彩色图像在时间分割图像的显示时间。
    • 10. 发明授权
    • Remote image display method, image capturing device, and method and program therefor
    • 远程图像显示方法,图像捕获装置及其方法和程序
    • US07385624B2
    • 2008-06-10
    • US10510954
    • 2004-01-15
    • Nobuhiko TakeharaTomoki WatanabeHiroki AnzaiKatsumi Kishida
    • Nobuhiko TakeharaTomoki WatanabeHiroki AnzaiKatsumi Kishida
    • H04N7/00H04N7/18H04N5/232H04N11/00
    • H04N7/185H04N5/232H04N5/23238H04N7/181H04N21/21805H04N21/4223H04N21/6587
    • An omnidirectional camera performs image sensing of a panoramic object 6 surrounding it, and sends the video signal to an image capturing device 1, then the image capturing device 1 extracts a video signal of a partial object 61 and sends the extracted video signal to a camera-equipped portable terminal 3 carried in user's hand at a place distant from the omnidirectional camera 2 to display the image of the video signal on a display surface 32a of the portable terminal, and the user shoots a surrounding object 8 with the portable terminal 3 and sends the surrounding video signal to the device 1. When the shooting direction of the portable terminal 3 is turned as indicated by the broken line, the device 1 detects a change in the shooting direction of he portable terminal 3 from a difference between the surrounding video signals generated before and after the turning of the portable terminal, and extracts, from a panorama video signal, a video signal of a partial object 62 turned from the partial object 61 in correspondence to the difference and sends the extracted video signal to the portable terminal 3 to display the image of the video signal.
    • 全向摄像机对其周围的全景物体6进行摄像,并将视频信号发送到图像拍摄装置1,然后,图像拍摄装置1提取部分对象61的视频信号,并将提取的视频信号发送到相机 在便携式终端的显示表面32a上将用户手中携带的装备便携式终端3放置在远离全方位摄像机2的位置,以将视频信号的图像显示在便携式终端3的显示表面32a上,并且用户拍摄周围物体8 并将周围的视频信号发送到设备1。 当便携式终端3的拍摄方向如虚线所示转动时,装置1根据在便携式终端3转动之前和之后产生的周围视频信号之间的差异检测便携式终端3的拍摄方向的变化 终端,并且从全景视频信号中提取对应于差异从部分对象61转动的部分对象62的视频信号,并将提取的视频信号发送到便携式终端3以显示视频信号的图像。