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    • 14. 发明申请
    • SIDE COLLISION DETERMINATION APPARATUS FOR VEHICLE AND HIGH VOLTAGE POWER SUPPLY SHUTT-OFF APPARATUS
    • 用于车辆和高压电源关闭装置的侧面碰撞测定装置
    • US20110224869A1
    • 2011-09-15
    • US13043126
    • 2011-03-08
    • Tomohiro INAGAKI
    • Tomohiro INAGAKI
    • G06F19/00
    • B60R21/0132B60L3/04B60R2021/0006B60R2021/01322
    • A side collision determination apparatus for a vehicle that includes a side surface including a right side surface and a left side surface, includes: a first acceleration sensor and a second acceleration sensor each of which is mounted on a sensor-mounted position of each side surface and each of which is configured to detect acceleration; and a determination unit which is configured to perform determination whether a level of collision, which has occurred at apart of the side surface, is equal to or higher than a prescribed level. The determination unit performs the determination based on the acceleration detected by a non-collision side one of the first and second acceleration sensors when the part of the side surface at which the collision has been occurred is adjacent to the sensor-mounted position. The determination unit performs the determination based on the acceleration detected by a collision side one of the first and second acceleration sensors when the part of the side surface at which the collision has been occurred is apart from the sensor-mounted position.
    • 一种用于车辆的侧面碰撞确定装置,其包括具有右侧表面和左侧表面的侧表面,包括:第一加速度传感器和第二加速度传感器,每个都安装在每个侧表面的传感器安装位置 并且每个被配置为检测加速度; 以及确定单元,被配置为执行在侧面的分开处发生的碰撞程度是否等于或高于规定水平。 当发生碰撞的侧面的一部分与传感器安装位置相邻时,判定单元基于由第一和第二加速度传感器中的非碰撞侧检测到的加速度进行确定。 当发生碰撞的侧面的一部分离开传感器安装位置时,判定单元基于由碰撞侧检测到的第一和第二加速度传感器之一的加速度进行确定。
    • 17. 发明授权
    • Communication apparatus, communication method, and a computer-readable medium
    • 通信装置,通信方法和计算机可读介质
    • US08780746B2
    • 2014-07-15
    • US13172459
    • 2011-06-29
    • Tomohiro Inagaki
    • Tomohiro Inagaki
    • H04L12/26
    • H04L43/0882
    • The disclosure provides a communication apparatus that can accurately measure the available bandwidth of a communication path between itself and another communication apparatus by performing measurement communication in accordance with an execution frequency. The communication apparatuses can select the optimum communication method in accordance with the identified available bandwidth, so that each of the communication apparatuses can reliably perform communication with a counterpart apparatus. The execution frequency is identified in accordance with the communication stability so that an appropriate execution frequency can be identified for each bidirectional communication path. In this way, communication apparatuses can accurately measure the available bandwidth by performing measurement communication with the optimum execution frequency.
    • 本公开提供了一种通过根据执行频率进行测量通信,能够精确地测量其与另一通信装置之间的通信路径的可用带宽的通信装置。 通信装置可以根据识别的可用带宽选择最佳通信方式,使得通信装置中的每一个可以可靠地执行与对方装置的通信。 根据通信稳定性来识别执行频率,从而可以为每个双向通信路径识别适当的执行频率。 以这种方式,通信设备可以通过执行具有最佳执行频率的测量通信来精确地测量可用带宽。
    • 18. 发明申请
    • ROTOR FOR ELECTRIC MACHINE
    • 电机转子
    • US20130307363A1
    • 2013-11-21
    • US13982629
    • 2012-02-02
    • Shinya SanoKen TakedaTomohiro InagakiShinichi OtakeTsuyoshi MiyajiYuta WatanabeRyosuke Utaka
    • Shinya SanoKen TakedaTomohiro InagakiShinichi OtakeTsuyoshi MiyajiYuta WatanabeRyosuke Utaka
    • H02K1/27
    • H02K1/27H02K1/2766
    • A rotor (10) for a rotary electric machine has a plurality of magnetic poles (24) provided at intervals, in a circumferential direction, at the outer periphery of a rotor core (12). Each of the magnetic poles (24) has a first permanent magnet (26) buried in the center of the magnetic pole, and a pair of second permanent magnets (28) that are buried on both sides of the first permanent magnet (26) in the circumferential direction, and that are disposed such that a mutual spacing between the pair of the second permanent magnets (28) becomes narrower inward in the radial direction. A narrowest spacing between the pair of second permanent magnets (28) is set to be wider than a longitudinal-direction width of the first permanent magnet (26) in a magnetic path region (30) that is defined by the first permanent magnet (26) and the pair of second permanent magnets (28).
    • 用于旋转电机的转子(10)具有在转子铁心(12)的外周沿圆周方向间隔设置的多个磁极(24)。 每个磁极(24)具有埋在磁极中心的第一永久磁体(26)和埋在第一永磁体(26)的两侧上的一对第二永磁体(28) 周向,并且被设置成使得一对第二永磁体(28)之间的相互间隔在径向方向上向内变窄。 在由第一永久磁铁(26)限定的磁路区域(30)中,一对第二永久磁铁(28)之间的最窄的间隔被设定得比第一永久磁铁(26)的长度方向宽度宽, )和一对第二永磁体(28)。
    • 19. 发明申请
    • System and Method of a Remote Conference
    • 远程会议的系统和方法
    • US20130222526A1
    • 2013-08-29
    • US13780371
    • 2013-02-28
    • Jun MIYAZAWATomohiro INAGAKI
    • Jun MIYAZAWATomohiro INAGAKI
    • H04N7/15
    • H04N7/155H04L12/1818H04M3/42221H04M3/567
    • A system may include a first communication device, and a recording server. The first communication device may set layout information indicative of a layout of media data. The first communication device may transmit, to the recording server, first media data to be transmitted to the second communication device, the layout information, and first identification information identifying the first communication device. The recording server may store the first media data, the layout information, and the first identification information transmitted from the first communication device. The recording server may receive a request for conference proceedings data from a particular device. The recording server may determine particular layout information for the particular device. The recording server may generate conference proceedings data based on the determined layout information and media data requested by the particular device.
    • 系统可以包括第一通信设备和记录服务器。 第一通信设备可以设置指示媒体数据的布局的布局信息。 第一通信设备可以向记录服务器发送要发送到第二通信设备的第一媒体数据,布局信息和识别第一通信设备的第一标识信息。 记录服务器可以存储从第一通信设备发送的第一媒体数据,布局信息和第一标识信息。 记录服务器可以从特定设备接收对会议程序数据的请求。 记录服务器可以确定特定设备的特定布局信息。 记录服务器可以基于由特定设备请求的确定的布局信息和媒体数据来生成会议记录数据。