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    • 2. 发明授权
    • Sensor terminal
    • 传感器端子
    • US09496954B2
    • 2016-11-15
    • US14239588
    • 2011-09-06
    • Miki HayakawaNorio OhkuboYoshihiro Wakisaka
    • Miki HayakawaNorio OhkuboYoshihiro Wakisaka
    • H04B10/114
    • H04B10/1143
    • According to an embodiment of the preset invention, in a sensor terminal that is worn by a person, and detects that respective wearers face each other by the aid of an optical communication, a plurality of optical transmit/receive units each having at least one of a transmission unit that emits the light to transmit data, and a reception unit that receives the light to receive the data is arranged within the housing, and the plurality of optical transmit/receive units is arranged so that light emission axes of the transmission units, or extension lines of light detection axes of the reception units approaches each other.
    • 根据本发明的实施例,在由人佩戴的传感器终端中,借助于光通信来检测相应的佩戴者彼此面对的多个光发射/接收单元,每个光发射/接收单元各自具有 发射光发送数据的发送单元和接收数据接收光的接收单元配置在壳体内,多个光发送接收单元被配置为使发送单元的发光轴, 或接收单元的光检测轴的延长线彼此接近。
    • 3. 发明授权
    • Group analysis system and group analysis equipment
    • 集团分析系统和组分析设备
    • US07656274B2
    • 2010-02-02
    • US12000141
    • 2007-12-10
    • Nobuo SatoNorio OhkuboNorihiko MoriwakiYoshihiro Wakisaka
    • Nobuo SatoNorio OhkuboNorihiko MoriwakiYoshihiro Wakisaka
    • G08B9/00
    • G01S17/74
    • Face-to-face detection by infrared-ray communication is effective in grasping interaction between persons. However the problem here is that infrared rays have a high directivity and detection fails unless the persons face each other right in front. Sensor signals having a high directivity and sensor signals having a low directivity are obtained from a sensor terminal (TR) carried by a person. Firstly, information on relative position is obtained with a sensor (TRIR) of infrared rays or the like having a high directivity and an initial group is formed at an application server (AS). A feature amount such as sound that has a low directivity and can sense surrounding environmental information is extracted from among the terminals (TRs) belonging to the initial group by personal feature extraction (ASIF), correlation with terminals (TRs) not belonging to a group is obtained, and thereby whether or not those terminals (TRs) belong to an identical group is judged.
    • 通过红外线通信进行面对面检测有效地抓住人与人之间的相互作用。 然而,这里的问题是,红外线具有高的方向性,并且检测失败,除非人们在前面相互面对。 具有高方向性的传感器信号和具有低方向性的传感器信号从人携带的传感器端子(TR)获得。 首先,利用具有高方向性的红外线等的传感器(TRIR)等获得关于相对位置的信息,并且在应用服务器(AS)形成初始组。 通过个人特征提取(ASIF)从属于初始组的终端(TR)中提取具有低方向性并且可以感测周围环境信息的声音的特征量,与不属于组的终端(TR)相关联 从而判断这些端子(TR)是否属于同一组。
    • 4. 发明授权
    • Sensor drive control method and sensor-equipped radio terminal device
    • 传感器驱动控制方法和装有传感器的无线电终端设备
    • US07289034B2
    • 2007-10-30
    • US11072402
    • 2005-03-07
    • Yoshihiro WakisakaShunzo YamashitaToshiyuki OdakaNorio Ohkubo
    • Yoshihiro WakisakaShunzo YamashitaToshiyuki OdakaNorio Ohkubo
    • G08B21/00
    • G01D3/08Y10T307/74
    • A radio terminal device realizing reduced power consumption and prompt detection of detection object by using a first sensor and a second sensor whose ON/OFF states are opposite and whose operations are synchronized. When the first sensor detects a detection object, the first output voltage level is changed. When a processor detects the change of the output voltage level as an interrupt signal, the drive voltage level of the first sensor is switched to low and the drive voltage level of the second sensor is switched to high. Moreover, when the second sensor detects a detection object, the output voltage level of the second sensor is changed. When the processor detects the change of the output voltage level as an interrupt signal, the drive voltage level of the second sensor is switched to low and the drive voltage level of the first circuit is switched to high.
    • 一种无线终端装置,其通过使用第一传感器和ON / OFF状态相反并且其操作同步的第二传感器来实现降低的功耗并迅速检测检测对象。 当第一传感器检测到检测对象时,第一输出电压电平发生变化。 当处理器检测到作为中断信号的输出电压电平的变化时,第一传感器的驱动电压电平被切换到低电平,并且第二传感器的驱动电压电平被切换到高电平。 此外,当第二传感器检测到检测对象时,第二传感器的输出电压电平发生变化。 当处理器检测到输出电压电平的变化作为中断信号时,第二传感器的驱动电压电平被切换到低电平,并且第一电路的驱动电压电平被切换到高电平。
    • 6. 发明申请
    • Sensor drive control method and sensor-equipped radio terminal device
    • 传感器驱动控制方法和装有传感器的无线电终端设备
    • US20060113844A1
    • 2006-06-01
    • US11072402
    • 2005-03-07
    • Yoshihiro WakisakaShunzo YamashitaToshiyuki OdakaNorio Ohkubo
    • Yoshihiro WakisakaShunzo YamashitaToshiyuki OdakaNorio Ohkubo
    • B23K11/24G08B21/00
    • G01D3/08Y10T307/74
    • A radio terminal device realizing reduced power consumption and prompt detection of detection object by using a first sensor and a second sensor whose ON/OFF states are opposite and whose operations are synchronized. When the first sensor detects a detection object, the first output voltage level is changed. When a processor detects the change of the output voltage level as an interrupt signal, the drive voltage level of the first sensor is switched to low and the drive voltage level of the second sensor is switched to high. Moreover, when the second sensor detects a detection object, the output voltage level of the second sensor is changed. When the processor detects the change of the output voltage level as an interrupt signal, the drive voltage level of the second sensor is switched to low and the drive voltage level of the first circuit is switched to high.
    • 一种无线终端装置,其通过使用第一传感器和ON / OFF状态相反并且其操作同步的第二传感器来实现降低的功耗并迅速检测检测对象。 当第一传感器检测到检测对象时,第一输出电压电平发生变化。 当处理器检测到作为中断信号的输出电压电平的变化时,第一传感器的驱动电压电平被切换到低电平,并且第二传感器的驱动电压电平被切换到高电平。 此外,当第二传感器检测到检测对象时,第二传感器的输出电压电平发生变化。 当处理器检测到输出电压电平的变化作为中断信号时,第二传感器的驱动电压电平被切换到低电平,并且第一电路的驱动电压电平被切换到高电平。
    • 10. 发明授权
    • Sensor drive control method and sensor-equipped radio terminal device
    • 传感器驱动控制方法和装有传感器的无线电终端设备
    • US07986243B2
    • 2011-07-26
    • US12633284
    • 2009-12-08
    • Yoshihiro WakisakaShunzo YamashitaToshiyuki OdakaNorio Ohkubo
    • Yoshihiro WakisakaShunzo YamashitaToshiyuki OdakaNorio Ohkubo
    • G08B21/00
    • G01D3/08Y10T307/74
    • A network system including: a first sensor device which includes a first sensor unit which detects an action of a detection object; and a first transmission unit which transmits first data regarding the action and first identification information to a server via a first base station: a second sensor device which includes; a second sensor unit which obtains sensing data; and a second transmission unit which transmits second data including the sensing data and second identification information to the server via a second base station; wherein the server is configured to: associate the first and second data based on the detection of the action; to access predetermined normal data correlating data; and, detect an abnormal condition if a combination of the action detected via the first sensor unit and the sensing data obtained by the second sensor unit conflict with the correlated normal data.
    • 一种网络系统,包括:第一传感器装置,其包括检测检测对象的动作的第一传感器单元; 以及第一传输单元,其经由第一基站向服务器发送关于所述动作的第一数据和所述第一识别信息;第二传感器装置, 获取感测数据的第二传感器单元; 以及第二传输单元,其经由第二基站向服务器发送包括感测数据和第二识别信息的第二数据; 其中所述服务器被配置为:基于所述动作的检测来关联所述第一和第二数据; 访问预定的正常数据相关数据; 并且如果通过第一传感器单元检测到的动作和由第二传感器单元获得的感测数据的组合与相关联的正常数据冲突,则检测异常状况。