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    • 11. 发明申请
    • Smart Scheduler Capable of Reflecting Change of Situation
    • 智能调度能够反映情况的变化
    • US20080275946A1
    • 2008-11-06
    • US12158219
    • 2006-01-26
    • We Duke ChoGil HuhSeong Hun YooHui Jeong Park
    • We Duke ChoGil HuhSeong Hun YooHui Jeong Park
    • G06F15/16
    • G06Q10/06
    • Disclosed is a smart scheduler reflecting change of situation. The smart scheduler reflecting change of situation includes an interface unit and an alarm time decision unit. The interface unit both sends and receives contextual information to/from an external service-providing source. The alarm time decision unit reflects the contextual information that is received and updated from the external service-providing source, so that it may decide a final alarm time for performing a fixed schedule, even if any situation change occurs. The smart scheduler has the advantage that the determined schedule may be performed in the time in which a user designates, by differently setting up the alarm time according to the situation changes, whatever situation change brings about.
    • 披露了一个反映情况变化的智能调度器。 反映情况变化的智能调度器包括接口单元和报警时间决定单元。 接口单元向/从外部服务提供源发送和接收上下文信息。 报警时间决定单元反映从外部服务提供源接收和更新的上下文信息,从而即使发生任何情况发生,它也可以决定执行固定时间表的最终报警时间。 智能调度器的优点在于,可以在用户指定的时间内通过根据情况变化不同地设置闹钟时间来执行所确定的时间表,无论情况变化如何。
    • 16. 发明授权
    • Ubiquitous monitoring system
    • 无处不在的监控系统
    • US08065114B2
    • 2011-11-22
    • US13056716
    • 2008-09-19
    • Byoung Hoon LeeSung Hwa LimJai Hoon KimWe Duke Cho
    • Byoung Hoon LeeSung Hwa LimJai Hoon KimWe Duke Cho
    • G06F17/40G06F19/00
    • G01D21/00H04L41/044
    • There is provided a ubiquitous monitoring system comprising a plurality of sensor nodes, one or more agent adapters receiving sensing data from the plurality of sensor nodes and determining to where the sensing data is transmitted according to one of characteristics of the plurality of sensing nodes and characteristics of the sensing data, one or more first monitoring agents receiving the sensing data from the agent adapter, one or more second monitoring agents receiving the sensing data from one of the agent adapter and the first monitoring agent, one or more third monitoring agents receiving the sensing data from one of the agent adapter and the second monitoring agent, and a monitoring engine receiving the sensing data from the third monitoring agent and monitoring the received sensing data.
    • 提供了一种无处不在的监视系统,其包括多个传感器节点,一个或多个代理适配器从多个传感器节点接收感测数据,并根据多个感测节点的特征之一确定感测数据的发送位置和特性 感测数据的一个或多个第一监视代理从代理适配器接收感测数据,一个或多个第二监视代理从代理适配器和第一监视代理之一接收感测数据,一个或多个第三监视代理接收 从所述代理适配器和所述第二监视代理之一感测数据;以及监视引擎,从所述第三监视代理接收所述感测数据并监视所接收的感测数据。
    • 17. 发明申请
    • METHOD FOR SELF LOCALIZATION USING PARALLEL PROJECTION MODEL
    • 使用并行投影模型进行自我定位的方法
    • US20100245564A1
    • 2010-09-30
    • US12675344
    • 2007-10-25
    • Yun Young NamYun Tai KyongShung Han ChoSang Jin HongWe-Duke Cho
    • Yun Young NamYun Tai KyongShung Han ChoSang Jin HongWe-Duke Cho
    • H04N7/18
    • G06T7/73G06T2207/30244G06T2207/30252
    • A method of recognizing a self location of an image acquisition device by acquiring an image of two or more reference objects is provided. The method of the present invention comprises setting an actual camera plane, two or more reference object planes, and two or more virtual viewable planes located between the actual camera plane and the reference object planes; projecting the reference objects to a corresponding one of the virtual viewable planes; calculating a distance between a viewing axis and the reference objects and a distance between the viewing axis and images on the actual camera plane, the images corresponding to the reference objects; and sensing the self location of the image acquisition device by using an orientation and a zoom factor of the image acquisition device and coordinates of the reference objects, wherein the zoom factor is a ratio of a length of the reference object plane and a distance between the reference object plane and the virtual viewable plane, and the actual camera plane, the virtual viewable plane, and the reference object plane are perpendicular to the viewing axis.
    • 提供了通过获取两个或更多个参考对象的图像来识别图像获取装置的自身位置的方法。 本发明的方法包括设置实际相机平面,两个或更多个参考对象平面以及位于实际相机平面和参考对象平面之间的两个或多个虚拟可视平面; 将所述参考对象投影到所述虚拟可见平面中的对应的一个; 计算观察轴与参考对象之间的距离以及观察轴与实际相机平面上的图像之间的距离,对应于参考对象的图像; 以及通过使用所述图像获取装置的取向和缩放因子以及所述参考对象的坐标来感测所述图像采集装置的自身位置,其中,所述缩放因子是所述参考对象平面的长度与所述参考对象的距离的比率 参考物体平面和虚拟可见平面,实际相机平面,虚拟可见平面和参考对象平面垂直于视轴。