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    • 1. 发明授权
    • Rotor of a micro motor
    • 微电机转子
    • US4035677A
    • 1977-07-12
    • US624468
    • 1975-10-21
    • Takaji KusayamaKatsuji Aoki
    • Takaji KusayamaKatsuji Aoki
    • G04C3/16H02K1/27H02K15/00
    • H02K1/2733G04C3/16H02K1/27
    • In a rotor of a micro motor, a magnet is indirectly attached to a rotor shaft by means of a pair of bushes without using any adhesive material. The pair of bushes comprises upper and lower bushes which are respectively mounted by means of an interference fit around the rotor shaft. Each bush comprises a cylindrical portion in the center of which a hole is formed, and a flange portion having around its periphery an annular notched portion. The notched portion of the upper bush is formed on a lower surface of the flange portion adjacent to the outer periphery of the cylindrical portion while the annular notched portion of the lower bush is formed on an upper surface of the flange portion adjacent to the outer periphery of the cylindrical portion, and due to the notched portions, each flange portion is provided with a certain degree of resiliency. The magnet is loosely fitted over the outer periphery of the cylindrical portions of the respective bushes and disposed between the flange portions thereof so that it is clamped between the flange portions of the bushed by means of the resiliency of the flange portions and thereby fixed between both bushes.
    • 在微型电动机的转子中,磁体通过一对衬套间接附接到转子轴上,而不使用任何粘合材料。 这对衬套包括上和下衬套,它们分别通过围绕转子轴的过盈配合安装。 每个衬套包括在其中心形成有孔的圆柱形部分和在其周边周围具有环形切口部分的凸缘部分。 上衬套的切口部分形成在与圆筒部分的外周相邻的凸缘部分的下表面上,而下衬套的环形切口部分形成在凸缘部分的与外周边相邻的上表面上 的圆柱形部分,并且由于切口部分,每个凸缘部分具有一定程度的弹性。 磁体松动地安装在相应衬套的圆柱形部分的外周上并且设置在其凸缘部分之间,使得其通过凸缘部分的弹性夹持在套筒的凸缘部分之间,从而固定在两者之间 灌木丛
    • 3. 发明授权
    • Camera terminal and monitoring system
    • 相机终端和监控系统
    • US07924311B2
    • 2011-04-12
    • US10585989
    • 2005-12-05
    • Atsushi YoshidaKatsuji AokiShoichi Araki
    • Atsushi YoshidaKatsuji AokiShoichi Araki
    • H04N7/18
    • H04N5/232G08B13/19641G08B13/19689H04N5/247H04N7/181
    • A camera terminal where tables where camera operations are described are not required, and that continues thoroughly imaging a monitoring subject region as a complete system even when a portion of cameras shuts down due to a failure is provided.The present invention is a camera terminal 110A in a monitoring system for imaging a monitoring subject region by cooperatively operating multiple camera terminals, and is equipped with a camera 101A having a function to change an imaging region, a communicator 103A to transmit/receive information for identifying the imaging region to/from other camera terminals, and an adjustment unit 102 to determine a monitoring responsible region for its own camera terminal so as to is make proximate the monitoring responsible region for its own camera terminal to a monitoring responsible region for the other camera terminal or a boundary of the monitoring subject region without leaving any space, and for adjusting the imaging region for the camera 101A to image the entire monitoring responsible region.
    • 提供了一种摄像机终端,其中不需要描述相机操作的表格,并且即使当相机的一部分由于故障而关闭时,也可以将监控对象区域作为完整系统进行彻底成像。 本发明是一种监视系统中的相机终端110A,用于通过协作操作多个相机终端对监视对象区域进行成像,并配备有具有改变成像区域的功能的相机101A,用于发送/接收信息的通信器103A 向/从其他相机终端识别成像区域,以及调整单元102,以确定其本身的相机终端的监视负责区域,以便将其本身的相机终端的监视负责区域靠近监视负责区域以用于另一个 相机终端或监视对象区域的边界,而不留下任何空间,并且用于调整摄像机101A的成像区域以对整个监视负责区域成像。
    • 5. 发明申请
    • Imaging Region Adjustment Device
    • 成像区域调整装置
    • US20080259162A1
    • 2008-10-23
    • US11667768
    • 2006-06-13
    • Katsuji AokiAtsushi YoshidaShoichi Araki
    • Katsuji AokiAtsushi YoshidaShoichi Araki
    • H04N7/18
    • H04N5/222G06K9/32G08B13/19643H04N5/2224H04N5/232H04N5/247H04N5/76H04N7/181
    • To provide an imaging region adjustment device, including plural camera terminals, capable of imaging an entire imaging target without blinds spots. Each of the camera terminals includes a camera (201) which images a virtual imaging region obtained while changing the position of an imaging region within a specific region in a specific period of time and an adjusting unit B (204) which adjusts the position of the virtual imaging region by controlling the camera (201). The adjusting unit B (204) adjusts the position and aspect ratio of the virtual imaging region of one's own camera terminal so that a combined region of the virtual imaging regions of the camera terminals completely covers a specific imaging target region, based on the virtual imaging region of one's own camera terminal and virtual imaging regions of the other camera terminals, and when the virtual imaging regions A of N other camera terminals are contained in the virtual imaging region of one's own camera terminal, divides the virtual imaging region of one's own camera terminal into N+1 regions.
    • 为了提供一种成像区域调整装置,包括多个相机终端,能够对没有盲区的整个成像目标进行成像。 每个相机终端包括摄像机(201),其对在特定时间段内的特定区域内的成像区域的位置进行改变而获得的虚拟成像区域成像;以及调整单元B(204),调整单元B 虚拟成像区域通过控制摄像机(201)。 调整单元B(204)调整自己的摄像机终端的虚拟摄像区域的位置和纵横比,使得摄像机终端的虚拟摄像区域的组合区域完全覆盖特定的成像目标区域,基于虚拟成像 自己的相机终端的区域和其他相机终端的虚拟成像区域,并且当N个其他相机终端的虚拟成像区域A包含在自己的相机终端的虚拟成像区域中时,将自己的相机的虚拟成像区域 终端进入N + 1区域。
    • 7. 发明授权
    • Device and method for motion vector detection
    • 运动矢量检测的装置和方法
    • US06289050B1
    • 2001-09-11
    • US09129534
    • 1998-08-05
    • Akihiko OhtaniKatsuji AokiToshiyuki Araki
    • Akihiko OhtaniKatsuji AokiToshiyuki Araki
    • H04N712
    • H04N5/145G06T7/238G06T2207/10016H04N19/433H04N19/51H04N19/56
    • According to the invention, a motion vector can be accurately and efficiently detected with regard to any type of images having a variety of characteristics. A motion vector detection unit detects a motion vector with regard to a coding target block on the basis of correlation with a candidate block within a search range. A search range storing memory stores pixel data of an original search range, and supplies, to the motion vector detection unit, pixel data of a search range in accordance with a memory address. A control unit sets the size and the position of the search range on the basis of the motion vector and the correlation evaluation value supplied from the motion vector detection unit, and generates pixel widths in the horizontal and vertical directions of the search range and an offset value corresponding to the relative position to the original search range. An address generation unit generates the memory address to be supplied to the search range storing memory on the basis of the pixel widths and the offset value of the search range generated by the control unit.
    • 根据本发明,关于具有各种特征的任何类型的图像,可以准确和有效地检测运动矢量。 基于与搜索范围内的候选块的相关性,运动矢量检测单元检测关于编码目标块的运动矢量。 搜索范围存储存储器存储原始搜索范围的像素数据,并且根据存储器地址将搜索范围的像素数据提供给运动矢量检测单元。 控制单元基于从运动矢量检测单元提供的运动矢量和相关评估值来设定搜索范围的大小和位置,并且生成搜索范围的水平和垂直方向上的像素宽度和偏移量 值对应于原始搜索范围的相对位置。 地址生成单元基于由控制单元生成的搜索范围的像素宽度和偏移值,生成要提供给搜索范围存储存储器的存储器地址。
    • 8. 发明授权
    • Method and apparatus for detecting motion vector and image coding apparatus
    • 用于检测运动矢量和图像编码装置的方法和装置
    • US06169766A
    • 2001-01-02
    • US09139653
    • 1998-08-25
    • Katsuji AokiAkihiko OhtaniToshiyuki Araki
    • Katsuji AokiAkihiko OhtaniToshiyuki Araki
    • H04N712
    • H04N5/145G06T7/238G06T2207/10016G06T2207/20052H04N19/51
    • In detecting a motion vector, sub-sampling is more selectively and adaptively set in terms of power consumption and detection performance. A correlation calculation section includes a plurality of correlation calculation blocks, each calculating correlation between a block to be coded and an associated candidate block within a search range. Each correlation calculation block is supplied with a different group of pixels of the block to be coded and an associated group of pixels of the associated candidate block, and calculates the correlation between the two groups of pixels supplied. A control section selectively sets sub-sampling in accordance with image feature information such as the frequency components of the block to be coded or operating state information such as the power left in a battery. And, in accordance with the setting of sub-sampling, the control section selectively operates part or all of the correlation calculation blocks of the correlation calculation section.
    • 在检测运动矢量时,根据功耗和检测性能,更有选择地和自适应地设定子采样。 相关计算部分包括多个相关计算块,每个相关计算块计算要编码的块与搜索范围内的相关候选块之间的相关性。 每个相关计算块被提供有要被编码的块的不同组的像素和相关联的候选块的相关联的像素组,并且计算提供的两组像素之间的相关性。 控制部根据图像特征信息,例如要编码的块的频率分量或诸如在电池中剩余的电力的操作状态信息来选择性地设置子采样。 并且,根据子采样的设定,控制部选择性地进行相关计算部的相关计算块的一部分或全部的操作。