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    • 1. 发明授权
    • Motion detection apparatus and motion detecting method
    • 运动检测装置和运动检测方法
    • US07813892B2
    • 2010-10-12
    • US11718340
    • 2005-11-01
    • Takashi SugawaraKohji KawaharaYuji Chotoku
    • Takashi SugawaraKohji KawaharaYuji Chotoku
    • G01C22/00
    • G08B13/1436G01H1/06G01H1/08G06F21/88
    • A motion detection apparatus includes an acceleration sensor which detects acceleration generated by motion of an electronic device; a motion detecting section including a statistical processing section which calculates the average value of data provided from the acceleration sensor, calculates the difference between the average value and the last value of the data obtained, and calculates a pseudo-variance value of the data from the calculated difference; a threshold comparing section which compares the pseudo-variance value calculated by the motion detecting section with a motion threshold to generate a signal value in response to determination that the pseudo-variance value has exceeded the motion threshold; a first buffer memory which sequentially stores signal values generated by the threshold comparing section at predetermined time intervals; and a signal generating section which includes means for adding up values in the first buffer memory, thereby appropriately associating with motion.
    • 运动检测装置包括加速度传感器,其检测由电子装置的运动产生的加速度; 运动检测部分,包括计算从加速度传感器提供的数据的平均值的统计处理部分,计算所获得的数据的平均值和最后值之间的差,并且计算来自所述加速度传感器的数据的伪方差值 计算差额 阈值比较部分,其将运动检测部分计算的伪方差值与运动阈值进行比较,以响应于伪方差值已经超过运动阈值的确定来生成信号值; 第一缓冲存储器,其以预定的时间间隔顺序地存储由阈值比较部分生成的信号值; 以及信号产生部分,其包括用于将第一缓冲存储器中的值相加的装置,从而适当地与运动相关联。
    • 2. 发明申请
    • Motion Detection Apparatus and Motion Detecting Method
    • 运动检测装置和运动检测方法
    • US20090006028A1
    • 2009-01-01
    • US11718340
    • 2005-11-01
    • Takashi SugawaraKohji KawaharaYuji Chotoku
    • Takashi SugawaraKohji KawaharaYuji Chotoku
    • G01P15/00
    • G08B13/1436G01H1/06G01H1/08G06F21/88
    • A motion detection apparatus includes an acceleration sensor which detects acceleration generated by motion of an electronic device; a motion detecting section including a statistical processing section which calculates the average value of data provided from the acceleration sensor, calculates the difference between the average value and the last value of the data obtained, and calculates a pseudo-variance value of the data from the calculated difference; a threshold comparing section which compares the pseudo-variance value calculated by the motion detecting section with a motion threshold to generate a signal value in response to determination that the pseudo-variance value has exceeded the motion threshold; a first buffer memory which sequentially stores signal values generated by the threshold comparing section at predetermined time intervals; and a signal generating section which includes means for adding up values in the first buffer memory, thereby appropriately associating acceleration with motion.
    • 运动检测装置包括加速度传感器,其检测由电子装置的运动产生的加速度; 运动检测部分,包括计算从加速度传感器提供的数据的平均值的统计处理部分,计算所获得的数据的平均值和最后值之间的差,并且计算来自所述加速度传感器的数据的伪方差值 计算差额 阈值比较部分,其将由运动检测部分计算的伪方差值与运动阈值进行比较,以响应于伪方差值已经超过运动阈值的确定而产生信号值; 第一缓冲存储器,其以预定的时间间隔顺序地存储由阈值比较部分生成的信号值; 以及信号产生部分,其包括用于将第一缓冲存储器中的值相加的装置,从而将加速度与运动适当地相关联。
    • 8. 发明申请
    • Method for Ensuring Safe Use of a Battery Pack After Impact
    • 冲击后确保电池组安全使用的方法
    • US20080297116A1
    • 2008-12-04
    • US12119708
    • 2008-05-13
    • Shigefumi OdaohharaMitsuru OgawaTakashi Sugawara
    • Shigefumi OdaohharaMitsuru OgawaTakashi Sugawara
    • H02J7/04H02H9/00G08B5/00
    • H01M2/34H01M10/48
    • A battery pack is disclosed. The battery pack includes a battery, an impact sensor, a processor and a memory. The impact sensor is capable of generating an impact signal in response to a detection of an impact on the battery pack. The processor is capable of generating impact information based on the impact signal, and processor continues to count a number of charging times to the battery after the generation of the impact information. The memory is capable of storing the impact information and the number of charging times. The processor can refer to the memory to deliver a control command to a battery charger so that the battery can only be charged up to an allowable charge capacity smaller than a full charge capacity after an occurrence of an impact when the battery pack is attached to the battery charger. The charging to the battery stops when the number of the counted charging times reaches a predetermined number of allowable charging times that is allowed after the generation of the impact information.
    • 公开了一种电池组。 电池组包括电池,冲击传感器,处理器和存储器。 冲击传感器能够响应于对电池组的冲击的检测而产生冲击信号。 处理器能够基于影响信号产生影响信息,并且处理器在产生影响信息之后继续计算电池的多个充电时间。 存储器能够存储影响信息和充电次数。 处理器可以参考存储器来向电池充电器传送控制命令,使得当电池组附接到电池组时,电池只能在发生冲击之后被充电至小于满充电容量的容许充电容量 充电器。 当计数的充电次数达到产生冲击信息之后允许的预定数量的允许充电时间时,对电池的充电停止。
    • 9. 发明申请
    • Light detecting apparatus
    • 光检测装置
    • US20050036187A1
    • 2005-02-17
    • US10891514
    • 2004-07-15
    • Takashi Sugawara
    • Takashi Sugawara
    • G01B11/26G01J1/02G02B26/10H04B10/07H04B10/11H04B10/112G02B26/08
    • G02B26/105G02B26/101H04B10/1121
    • A light detecting apparatus has a two-axis deflector such as a two-axis mirror capable of controlling the deflection of a light beam. The apparatus realizes a sure and speedy light beam search operation without increasing deflecting frequencies of the two-axis deflector. In the light detecting apparatus, a digital signal processor (3) generates two periodic signals having different frequencies to separately control deflective operations in two axial directions of the two-axis deflection mirror (1). A light beam from the two-axis deflection mirror (1) draws a locus on a two-dimensional position sensitive detector (2). Along the locus, the search operation is carried out to find an orientation of a light emitting element that emits a light beam toward the two-axis deflection mirror (1).
    • 光检测装置具有双轴偏转器,例如能够控制光束偏转的双轴镜。 该装置实现了确保和快速的光束搜索操作,而不增加双轴偏转器的偏转频率。 在光检测装置中,数字信号处理器(3)产生具有不同频率的两个周期信号,以分开地控制双轴偏转镜(1)的两个轴向的偏转操作。 来自两轴偏转镜(1)的光束在二维位置敏感检测器(2)上绘制轨迹。 沿着轨迹,进行搜索操作以找到向双轴偏转镜(1)发射光束的发光元件的取向。
    • 10. 发明授权
    • Communication route guidance system
    • 通信路线指导系统
    • US06484093B1
    • 2002-11-19
    • US09714601
    • 2000-11-17
    • Yasuo ItoNaoki GoraiTakashi SugawaraSatoshi KitanoHiroyuki Yamakawa
    • Yasuo ItoNaoki GoraiTakashi SugawaraSatoshi KitanoHiroyuki Yamakawa
    • G01C2134
    • G01C21/34
    • A communication route guidance system provides exchange of data between an information center and each of a plurality of mobile units such as vehicles. The information center has the latest road data and searches it to prepare recommended route guidance data in response to a request from the mobile unit. The reccommended route guidance data is divided into a plurality of data segments, each usable as an independent guidance instruction in the mobile unit. The mobile unit has stored therein road data similar to the road data in the information center and determines if data communication with the information center is available. In a case where the mobile unit can not communicate with the information center, the mobile unit prepares route guidance based on the road data stored in the mobile unit. It thereby becomes possible to guide the user even in the case that the mobile unit can not communicate with the information center. Even in a case where a communication link is disrupted during transmission of route guidance data to the mobile unit, the mobile unit can effectively prepare whole route guidance data in combination with already-received route guidance data and additionally prepared route guidance data by reference to the road data stored in the mobile unit because the already received route guidance data is structured to be usable independently.
    • 通信路线引导系统提供信息中心与诸如车辆的多个移动单元中的每一个之间的数据交换。 信息中心具有最新的道路数据,并根据移动单元的请求进行搜索,以准备推荐的路线指导数据。 推荐路线引导数据被划分为多个数据段,每个数据段可用作移动单元中的独立指导指令。 移动单元存储与信息中心中的道路数据类似的道路数据,并且确定与信息中心的数据通信是否可用。 在移动单元不能与信息中心通信的情况下,移动单元基于存储在移动单元中的道路数据准备路线引导。 由此即使在移动单元不能与信息中心通信的情况下也能够引导用户。 即使在将路线引导数据发送到移动单元时通信链路中断的情况下,移动单元也可以结合已经接收到的路线引导数据和附加准备的路线引导数据,有效地准备整个路线引导数据,参考 由于已经接收到的路线引导数据被构造为能够独立使用,存储在移动单元中的道路数据。