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    • 2. 发明申请
    • INFORMATION PROCESSING SYSTEM AND INFORMATION PROCESSING METHOD
    • 信息处理系统和信息处理方法
    • US20130217441A1
    • 2013-08-22
    • US13882479
    • 2011-09-07
    • Kenichi KitataniShinjiro Ishida
    • Kenichi KitataniShinjiro Ishida
    • G06F3/01
    • G06F3/015G02B27/017G02B2027/0138G02B2027/014G06F1/163
    • An information processing system includes a mobile equipment and an information processing apparatus. The mobile equipment includes a sensor for acquiring biological information, a camera for acquiring an image corresponding to a visual field of a user, and a first communication means. The information processing apparatus includes a second communication unit and computing unit. The computing unit determines whether to activate the camera based on the biological information acquired by the sensor. Further, the computing unit extracts a feature from the image acquired by the camera and transmits information regarding the extracted feature to a public network using the second communication unit to acquire a searched result regarding the extracted feature.
    • 信息处理系统包括移动设备和信息处理设备。 移动设备包括用于获取生物信息的传感器,用于获取与用户的视野相对应的图像的照相机和第一通信装置。 信息处理装置包括第二通信单元和计算单元。 计算单元基于由传感器获取的生物信息确定是否激活摄像机。 此外,计算单元从由摄像机获取的图像中提取特征,并使用第二通信单元将关于所提取的特征的信息发送到公共网络,以获取关于所提取的特征的搜索结果。
    • 8. 发明授权
    • Input apparatus
    • 输入装置
    • US09348442B2
    • 2016-05-24
    • US13980206
    • 2012-01-24
    • Kenichi KitataniHiroyuki AokiYumi KatouAyumu YagihashiAtsuhiko MurayamaSeiji Sugahara
    • Kenichi KitataniHiroyuki AokiYumi KatouAyumu YagihashiAtsuhiko MurayamaSeiji Sugahara
    • G06F3/041G06F3/043
    • G06F3/041G06F3/043G06F2203/04101
    • An input apparatus (for example, a mobile terminal apparatus (100)) includes a display unit (60) that displays a plurality of operation position displays (for example, operation position displays (61 to 66)); and a detection unit that contactlessly detects an operation which corresponds to an operation position set in a specific space of a front of the input apparatus in correspondence to each of the plurality of operation position displays. The detection unit includes a first piezoelectric element (an oscillation piezoelectric element (31)) that oscillates ultrasound toward the front space of the input apparatus; a second piezoelectric element (a reception piezoelectric element (21)) that detects the ultrasound which is oscillated by the first piezoelectric element; and a determination unit that determines whether or not an operation is performed on a certain operation position based on a result of detection performed by the second piezoelectric element.
    • 输入装置(例如,移动终端装置)具备显示多个操作位置显示(例如,操作位置显示(61〜66))的显示部(60)。 以及检测单元,其对应于所述多个操作位置显示中的每一个,对与输入装置的前部的特定空间中设置的操作位置相对应的操作进行无接触地检测。 检测单元包括使超声波朝向输入设备的前部空间振荡的第一压电元件(振荡压电元件(31)); 第二压电元件(接收压电元件),其检测由所述第一压电元件振荡的超声波; 以及确定单元,其基于由所述第二压电元件执行的检测结果来确定是否在某个操作位置执行操作。
    • 9. 发明申请
    • Mobile Terminal
    • 移动终端
    • US20080310517A1
    • 2008-12-18
    • US11883198
    • 2006-03-27
    • Kenichi Kitatani
    • Kenichi Kitatani
    • H04N7/26
    • H04N5/4401H04N5/44582H04N5/63H04N19/156H04N19/44H04N19/587H04N19/59H04N21/41407H04N21/440263H04N21/4436
    • A mobile terminal includes: a decoder configured to decode compressed motion picture data to thereby generate motion picture data; and a display configured to have a screen where a motion picture in accordance with the motion picture data is displayed. The decoder changes quality of the motion picture in accordance with a size of a region in the screen where the motion picture is displayed. For example, the decoder reduces the quality of the motion picture with a decrease in the size of the region described above. Here, the quality of the motion picture refers to the number of frames of the motion picture or the resolution of the motion picture. In this way, the power consumption of the mobile terminal is reduced.
    • 移动终端包括:解码器,被配置为解码压缩的运动图像数据,从而生成运动图像数据; 以及显示器,被配置为具有显示根据运动图像数据的运动图像的屏幕。 解码器根据显示运动画面的屏幕中的区域的大小改变运动画面的质量。 例如,解码器随着上述区域的尺寸的减小而降低了运动画面的质量。 这里,运动图像的质量是指运动图像的帧数或运动图像的分辨率。 以这种方式,移动终端的功耗降低。
    • 10. 发明授权
    • Portable terminal and GPS time keeping method
    • 便携式终端和GPS定时保持方式
    • US07084810B2
    • 2006-08-01
    • US10863273
    • 2004-06-09
    • Kenichi Kitatani
    • Kenichi Kitatani
    • G01S1/00G01S5/14
    • G01S19/23G01S19/34
    • A portable terminal includes a GPS processing unit and RTC oscillator. In the GPS processing unit, a free-run RTC counter continuously counts real time clocks generated by the RTC oscillator even in the power saving mode, a time maintenance processing unit which includes a memory storing the count value of the free-run RTC counter and a notified GPS time upon a shift from a normal power mode to the power saving mode, calculates the duration of the power saving mode from the difference between the count value stored in the memory and the count value read from the free-run RTC counter upon return from the power saving mode to the normal power mode, and calculates the current GPS time by adding the calculated duration of the power saving mode to the stored GPS time upon a shift from the normal power mode to the power saving mode, and a position measurement processing unit performs position measurement by receiving a radio wave from the GPS satellite in the normal power saving mode, also notifies the time maintenance processing unit of the GPS time acquired when position measurement is performed, and performs position measurement by using the GPS time notified from the time maintenance processing unit upon a shift from the power saving mode to the normal power mode. A GPS keeping method is also disclosed.
    • 便携式终端包括GPS处理单元和RTC振荡器。 在GPS处理单元中,即使在省电模式下,自由运行的RTC计数器连续计数由RTC振荡器产生的实时时钟,时间维护处理单元包括存储自由运行的RTC计数器的计数值的存储器和 从正常功率模式转换到省电模式时的通知GPS时间,根据存储在存储器中的计数值与从自由运行的RTC计数器读取的计数值之间的差计算节电模式的持续时间, 从省电模式返回到正常功率模式,并且通过将所计算的省电模式的持续时间与从正常功率模式切换到省电模式的存储的GPS时间相加来计算当前GPS时间,以及位置 测量处理单元通过在正常省电模式下从GPS卫星接收无线电波来执行位置测量,还将时间维持处理单元通知所获取的GPS时间w 执行母鸡位置测量,并且在从省电模式转换到正常功率模式时,使用从时间维护处理单元通知的GPS时间来执行位置测量。 还公开了GPS保持方法。