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    • 1. 发明专利
    • Character input system and method using acceleration sensor
    • 特征输入系统和使用加速度传感器的方法
    • JP2011175315A
    • 2011-09-08
    • JP2010036851
    • 2010-02-23
    • Ikutoku Gakuen学校法人幾徳学園
    • TANAKA HIROSHIIOKURA SHIGENORINISHIMURA HIROMITSUHIRAKO HISATOMO
    • G06F3/01G06F3/033
    • PROBLEM TO BE SOLVED: To provide a new character input system which does not depend on a keyboard. SOLUTION: In the character input system including a plurality of acceleration sensors each of which has a unique identifier and an information processor capable of freely communicating with the acceleration sensors, the set of templates is prepared for every character configuring element of a target character, and the set is stored in association with the identifier unique to the acceleration sensor. Collation data are respectively generated from two acceleration data to be detected when a user, who wears the two acceleration sensors in his or her both hands, performs the air plotting of the character configuring elements by using each of the hands, and between each collation data and the set of templates stored in association with the identifiers of the acceleration sensors as the transmission source of the acceleration data, matching them is executed, and the combination of the determined two character configuring elements is converted into the target character. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供不依赖于键盘的新字符输入系统。 解决方案:在包括多个加速度传感器的字符输入系统中,每个加速度传感器具有独特的标识符和能够与加速度传感器自由通信的信息处理器,为目标的每个字符配置元素准备一组模板 字符,并且该集合与加速度传感器唯一的标识符相关联地存储。 分类数据分别从两个加速度数据生成,当用户双手中的两个加速度传感器佩戴时,通过使用每个手执行字符构成元素的空气绘图,并且在每个对照数据 并且与加速度传感器的标识符相关联地存储与作为加速度数据的传输源相匹配的模板集合,并且将所确定的两个字符构成元素的组合转换为目标字符。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Character recognition system and program for recognizing finger character
    • 识别手指字符识别系统和程序
    • JP2014038543A
    • 2014-02-27
    • JP2012181493
    • 2012-08-20
    • Ikutoku Gakuen学校法人幾徳学園
    • TANAKA HIROSHISHOJI TAKAYAKATO MASAKISUGAYA TAKAHIRONISHIMURA HIROMITSUSUZUKI TAKAYUKI
    • G06T7/20
    • PROBLEM TO BE SOLVED: To provide a new method for real-time image recognition of finger characters.SOLUTION: A user wears on both hands color gloves in which five finger tips and back of the hand are colored in six different colors; the user is photographed in color with the back of both hands directed to photographing means; and an obtained frame image is divided into two in an X-axis direction. For each of a first image and a second image obtained from the division, inter-gravity center distances between the gravity center of a colored area of the back of the hands and the center of gravities of colored areas of the finger tip parts are calculated and normalized; collection data having the normalized inter-gravity distances according to the five fingers of the right and left hands as elements is taken as collation data; and the collation data is collated with a template prepared in advance.
    • 要解决的问题:提供手指字符的实时图像识别的新方法。解决方案:用户戴双手颜色手套,其中五个手指尖和手背都以六种不同的颜色着色; 用双手指向拍照装置的方式拍摄用户的颜色; 将获得的帧图像沿X轴方向分割成两个。 对于从分割获得的第一图像和第二图像中的每一个,计算手背的着色区域的重心与指尖部分的着色区域的重心的重心之间的重心距离, 标准化; 具有根据左手和左手的五个手指作为元素的标准化重心距离的收集数据被作为对照数据; 并将核对数据与预先准备的模板进行整理。
    • 3. 发明专利
    • Wireless state detecting system
    • 无线状态检测系统
    • JP2009151523A
    • 2009-07-09
    • JP2007328536
    • 2007-12-20
    • Ikutoku Gakuen Kanagawa Koka DaigakuTama Tlo Ltdタマティーエルオー株式会社学校法人幾徳学園神奈川工科大学
    • TANAKA HIROSHIIOKURA SHIGENORIYANAKA KAZUHISA
    • G08B21/18G08B25/10
    • PROBLEM TO BE SOLVED: To provide a wireless state detecting system, simply added without requiring any large-scale work for the existing equipment, and detecting a change in state of a number of detection objects using one wireless receiver.
      SOLUTION: A wireless transmitter and a shielding means corresponding thereto are provided for the detection object having a fixed part and a movable part movably provided on the fixed part, and according to the movement of the movable part, the shielding means shields a radio wave transmitted by the wireless transmitter. In this configuration, a wireless receiver is installed at a position to receive the radio wave transmitted by the wireless transmitter provided on the detection object wireless state detecting system, whereby the possibility of receiving a radio wave transmitted by the wireless transmitter or a change in its receiving strength is watched to simply detect the state of the detection object.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种无线状态检测系统,简单地添加,而不需要对现有设备进行任何大规模的工作,并且使用一个无线接收器检测多个检测对象的状态变化。 解决方案:为具有固定部分和可移动地设置在固定部分上的可移动部分的检测对象提供无线发送器和对应的屏蔽装置,并且根据可移动部件的移动,屏蔽装置屏蔽 由无线发射机发射的无线电波。 在这种配置中,无线接收机安装在接收由检测对象无线状态检测系统上提供的无线发射机发送的无线电波的位置,由此接收由无线发射机发送的无线电波的可能性或其中的变化 观察接收强度以简单地检测检测对象的状态。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Signal generator, electronic apparatus controller, and program
    • 信号发生器,电子设备控制器和程序
    • JP2012247975A
    • 2012-12-13
    • JP2011118885
    • 2011-05-27
    • Ikutoku Gakuen学校法人幾徳学園
    • TANAKA HIROSHIIOKURA SHIGENORIOKAMURA MASASHIKATO MASAKIFUKANO YOSHIAKI
    • G06F3/01A61B3/10A61B5/0488G06F3/033
    • PROBLEM TO BE SOLVED: To provide a novel electronic apparatus controller which does not require an additional component for distinguishing between a blink for command generation and a blink as a normal body response.SOLUTION: It is determined whether or not a difference time between a detection time of a positive potential generated with a closing motion of an eyelid and a detection time of a negative potential generated with an opening motion of an eyelid is within a threshold range for determining the start of signal generation. When the difference time is within the threshold range, a signal generation time is defined with at least one of the detection times of the positive and negative potentials as a reference, and only the blink within the signal generation time is detected as the blink for command generation.
    • 要解决的问题:提供一种新颖的电子设备控制器,其不需要用于区分用于命令生成的闪烁和作为正常身体响应的眨眼的附加组件。 解决方案:确定由眼睑的闭合运动产生的正电位的检测时间与眼睑开放运动产生的负电位的检测时间之间的差时间是否在阈值内 确定信号产生开始的范围。 当差时间在阈值范围内时,以正电位和负电位的检测时间中的至少一个作为参考来定义信号生成时间,并且仅将信号生成时间内的闪烁检测为命令的闪烁 代。 版权所有(C)2013,JPO&INPIT