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    • 11. 发明授权
    • Image processing apparatus
    • 图像处理装置
    • US08279279B2
    • 2012-10-02
    • US12230212
    • 2008-08-26
    • Toshihiro HattoriMasayuki Imanishi
    • Toshihiro HattoriMasayuki Imanishi
    • H04N7/18
    • H04N7/183B60R1/00B60R2300/301B60R2300/302B60R2300/306B60R2300/404B60R2300/70H04N5/232
    • An image processing apparatus permits a user to readily recognize a current state of an angle of view. When an angle of view is switched from a wide-angle to a narrow-angle, range display is performed for a predetermined time prior to the switching. Range display includes a narrow-angle image frame formed with lines indicating a border of an image displayed for a predetermined time prior to the switching. After the predetermined time, a narrow-angle image is displayed and the range display is no longer displayed. The range display allows a user to readily recognize that the wide-angle image has been switched to the narrow-angle image by recognizing to what area in a pre-switching wide angle of view image the post-switching narrow-angle image corresponds.
    • 图像处理装置允许用户容易地识别视角的当前状态。 当视角从广角切换到窄角时,在切换之前的预定时间进行范围显示。 范围显示包括形成有指示在切换之前的预定时间显示的图像的边界的线的窄角图像帧。 在预定时间之后,显示窄角度图像,并且不再显示范围显示。 范围显示允许用户通过识别切换后的窄视角图像的预切换广角图像中的哪个区域来容易地识别广角图像已被切换到窄角图像。
    • 13. 发明授权
    • Obstacle detecting device
    • 障碍物检测装置
    • US08125321B2
    • 2012-02-28
    • US11905755
    • 2007-10-03
    • Kiyonari KojimaToshihiro HattoriAkio Nakano
    • Kiyonari KojimaToshihiro HattoriAkio Nakano
    • B60Q1/00G08B23/00G01S15/00
    • G01S7/521G01S15/931G10K9/122Y10S367/909
    • An obstacle detecting device includes a wall member and an ultrasonic sensor. The wall member has a base member having an inner surface, and the base member extends in parallel with an imaginary plane. The ultrasonic sensor is attached to the inner surface of the base member for transmitting and receiving an ultrasonic wave via the base member. The ultrasonic sensor includes an ultrasonic transducer, and is in contact with the base member via a contact portion of the inner surface of the base member. The wall member includes a plurality of rigidity changing portions that are arranged on an other part of the inner surface other than the contact portion in an arrangement direction away from the contact portion.
    • 障碍物检测装置包括壁构件和超声波传感器。 壁构件具有具有内表面的基部构件,并且基部构件与假想平面平行地延伸。 超声波传感器安装在基体的内表面,用于经由基底部件发送和接收超声波。 超声波传感器包括超声波换能器,并且经由基座构件的内表面的接触部分与基座构件接触。 壁构件包括多个刚性改变部分,其沿与远离接触部分的布置方向布置在除了接触部分之外的内表面的另一部分上。
    • 15. 发明授权
    • Driving position adjusting system
    • 驾驶位置调整系统
    • US07734396B2
    • 2010-06-08
    • US11902213
    • 2007-09-20
    • Toshihiro HattoriMitsuyasu MatsuuraHirotane Ikeda
    • Toshihiro HattoriMitsuyasu MatsuuraHirotane Ikeda
    • G06F7/00
    • B60N2/0244
    • A driving position adjusting system automatically adjusts a driving position in a second vehicle appropriately to a target user based on a driving position in a first vehicle adjusted by the target user. The driving position adjusting system includes a storage device, a detection device, an estimation device, a transmission device, and a control device. The storage device stores statistic data. The detection device detects a selected one of a plurality of divided range segments of the driving position in the first vehicle, the selected one being selected by the target user. The estimation device estimates an optimum one of the plurality of divided range segments in the second vehicle based on the statistic data and the selected one. The transmission device transmits to the second vehicle the optimum one in the second vehicle. The control device controls the driving position in the second vehicle correspondingly to the optimum one.
    • 基于由目标用户调整的第一车辆中的驾驶位置,驾驶位置调整系统根据目标用户自动调整第二车辆中的驾驶位置。 驱动位置调整系统包括存储装置,检测装置,估计装置,发送装置以及控制装置。 存储设备存储统计数据。 检测装置检测第一车辆中的驾驶位置的多个分割范围段中的所选择的一个,所选择的一个被目标用户选择。 估计装置基于统计数据和所选择的估计来估计第二车辆中的多个分割范围段中的最佳一个。 传动装置在第二车辆中向第二车辆传送最佳的车辆。 控制装置根据最佳的控制装置控制第二车辆的驾驶位置。
    • 18. 发明申请
    • Image processing apparatus
    • 图像处理装置
    • US20090066842A1
    • 2009-03-12
    • US12230346
    • 2008-08-28
    • Toshihiro HattoriBingchen WanMasayuki Imanishi
    • Toshihiro HattoriBingchen WanMasayuki Imanishi
    • H04N5/00
    • H04N9/8205B60R1/00B60R2300/302B60R2300/402B60R2300/406B60R2300/602G06T3/0018H04N5/3572H04N5/772H04N5/781H04N5/907
    • An image processing apparatus executes distortion compensation based on distortion compensation information associated with desired distortion compensation and an angle of view of an image currently being displayed on a display device. Distortion compensation can be performed stepwise without use of any other distortion compensation information until a distortion compensated state is realized based on distortion compensation information stored in a memory unit. Distortion compensation based on a level received by an operating unit is provided. An image having undergone distortion compensation can be displayed. The number of distortion compensation information items need not be increased proportionally to the number of levels for a magnitude of distortion compensation to be implemented since distortion compensation can be stepwise implemented from the current distortion compensation until a magnitude of distortion compensation is realized based on specific distortion compensation information.
    • 图像处理装置基于与期望的失真补偿相关联的失真补偿信息和当前显示在显示装置上的图像的视角执行失真补偿。 可以不使用任何其他失真补偿信息来逐步执行失真补偿,直到基于存储在存储器单元中的失真补偿信息来实现失真补偿状态。 提供了基于操作单元接收的电平的失真补偿。 可以显示经历失真补偿的图像。 失真补偿信息项的数量不需要与要实现的失真补偿的大小的级别的数量成比例地增加,因为可以从当前失真补偿逐步实现失真补偿,直到基于特定失真来实现失真补偿的幅度 补偿信息。
    • 20. 发明申请
    • PROCESSOR AND DATA TRANSFER UNIT
    • 处理器和数据传输单元
    • US20080086617A1
    • 2008-04-10
    • US11865669
    • 2007-10-01
    • Hironori KASAHARAKeiji KimuraTakashi TodakaTatsuya KameiToshihiro Hattori
    • Hironori KASAHARAKeiji KimuraTakashi TodakaTatsuya KameiToshihiro Hattori
    • G06F13/00
    • G06F15/167
    • To reduce overhead of data transfer between processor cores and improve a processing capability of a processor, there is provided a processor including: a CPU for performing computing processing; an internal memory for storing data; and a data transfer unit for performing data transfer between the internal memory and a shared memory, in which: the data transfer unit includes: a command chain module for executing a command sequence formed of a plurality of commands including a data transfer instruction; and a monitor module for reading data set in advance in the internal memory and repeatedly monitoring the data until a comparative value and a value of the data become equal to each other, when one of the plurality of commands of the command sequence thus read is a predetermined command; and the command chain module executes a next command in the command sequence after the monitor module has finished monitoring.
    • 为了减少处理器核心之间的数据传输的开销并提高处理器的处理能力,提供了一种处理器,包括:用于执行计算处理的CPU; 用于存储数据的内部存储器; 以及数据传送单元,用于在内部存储器和共享存储器之间执行数据传送,其中:数据传送单元包括:命令链模块,用于执行由包括数据传送指令的多个命令形成的命令序列; 以及监视器模块,用于读取预先在内部存储器中设置的数据并重复监视数据,直到数据的比较值和值变得彼此相等时,当这样读取的命令序列的多个命令之一是 预定命令 命令链模块在监控模块完成监控后,在命令序列中执行下一个命令。