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    • 3. 发明申请
    • APPARATUS AND METHOD OF DYNAMICALLY MANAGING SENSOR MODULE ON SENSOR NODE IN WIRELESS SENSOR NETWORK
    • 无线传感器网络传感器节点传感器模块动态管理的设备及方法
    • US20110131320A1
    • 2011-06-02
    • US12808432
    • 2008-11-17
    • Sang-Gi HongSang-Joon ParkCheol-Sig PyoJong-Suk Chae
    • Sang-Gi HongSang-Joon ParkCheol-Sig PyoJong-Suk Chae
    • G06F15/173
    • H04W92/02H04W84/14
    • Provided is an apparatus and method of dynamically managing a sensor module on a sensor node in a wireless sensor network. The apparatus includes an update unit, a request unit, and a transmission unit. If a change occurs in sensor data corresponding to each sensor node stored in a sensor information storage server, the update unit receives the sensor data from the sensor information storage server, and transmits the received sensor data to the corresponding sensor node. The request unit requests the sensor data from the sensor information storage server upon receipt of a sensor data request message from the sensor node. The transmission unit receives the requested sensor data from the sensor information storage server and transmits the received sensor data to the sensor node.
    • 提供了一种在无线传感器网络中的传感器节点上动态地管理传感器模块的装置和方法。 该装置包括更新单元,请求单元和传输单元。 如果在与传感器信息存储服务器中存储的每个传感器节点相对应的传感器数据中发生改变,则更新单元从传感器信息存储服务器接收传感器数据,并将接收到的传感器数据发送到相应的传感器节点。 当从传感器节点接收到传感器数据请求消息时,请求单元从传感器信息存储服务器请求传感器数据。 发送单元从传感器信息存储服务器接收所请求的传感器数据,并将接收到的传感器数据发送到传感器节点。
    • 4. 发明申请
    • METHOD FOR RECOGNIZING POSITIONS OF A PLURALITY OF NODES WHICH CONSIST WIRELESS SENSOR NETWORK
    • 识别无线传感器网络的多个节点的位置的方法
    • US20100265889A1
    • 2010-10-21
    • US12808528
    • 2008-05-22
    • Jong-Jun ParkSang-Joon ParkCheol-Sig PyoJong-Suk Chae
    • Jong-Jun ParkSang-Joon ParkCheol-Sig PyoJong-Suk Chae
    • H04W40/00
    • G01S5/0289G01S5/18H04W64/00
    • A method for recognizing positions of a plurality of nodes which constitute a wireless sensor network is provided, the method comprises generating sub-maps which represent the relative position to neighbor nodes by taking each of the plurality of nodes as a reference; selecting a sub-map which takes a node with the highest connectivity as a reference from among the plurality of nodes; selecting a sub-map which takes a node with the highest connectivity as a reference, except for the node which becomes a reference of the selected sub-map among the nodes which are included in the selected sub-map; integrating the selected sub-maps into one map by matching the same nodes among the nodes which are commonly included in the selected sub-maps; and thereafter correcting positions of nodes which are included in the integrated map to real positions, whereby integrating order of the sub-map is adjusted using an information of the connectivity of the nodes, and the positions of the nodes which constitute the wireless sensor network is constituted are correctly recognized by correcting the position of the nodes.
    • 提供了一种用于识别构成无线传感器网络的多个节点的位置的方法,该方法包括通过以多个节点中的每一个作为参考来生成表示相邻节点的相对位置的子映射; 从多个节点中选择具有最高连通性的节点作为参考的子地图; 选择以具有最高连通性的节点作为参考的子地图,除了在包括在所选择的子地图中的节点之间成为所选择的子地图的参考的节点之外; 通过匹配通常包括在所选子图中的节点之间的相同节点将所选择的子地图整合到一个地图中; 然后将包括在积分图中的节点的位置校正为实际位置,由此使用节点的连通性的信息来调整子地图的积分顺序,构成无线传感器网络的节点的位置为 通过校正节点的位置来正确识别构成的结构。
    • 10. 发明授权
    • Plasma chemical vapor deposition apparatus
    • 等离子体化学气相沉积装置
    • US06886491B2
    • 2005-05-03
    • US10102108
    • 2002-03-19
    • Jae-Ho KimSang-Joon Park
    • Jae-Ho KimSang-Joon Park
    • C23C16/455C23C16/44C23C16/515H01L21/205C23C16/00
    • C23C16/45544C23C16/45514C23C16/45538C23C16/45565C23C16/4557C23C16/45574C23C16/515
    • The present invention relates to chemical vapor deposition apparatus. In the chemical vapor deposition apparatus, an RF power source connection portionconnected to an external RF power source is installed on an upper side of a chamber; an RF electrode plate is installed within the chamber to be spaced with a predetermined gap from an inner upper surface of the chamber and to be spaced with a predetermined gap from a showerhead disposed below the RF electrode plate; plasma is generated in a first buffer portion, which is defined by a gap between the RF electrode plate and an upper surface of the showerhead, by means of the electric power applied from the external RF power source to the RF electrode plate; the showerhead is divided into two sections in a vertical direction and a second buffer portion is defined by a space between the two sections; reactant gases are supplied to the first buffer portion in which the plasma is generated; and source gases are supplied to the second buffer portion.
    • 本发明涉及化学气相沉积装置。 在化学气相沉积设备中,连接到外部RF电源的RF电源连接部分安装在室的上侧; 射频电极板安装在腔室内以与腔室的内上表面隔开预定的间隙,并与设置在RF电极板下方的喷头隔开预定间隙; 通过从外部RF电源向RF电极板施加的电力,在由RF电极板和喷头的上表面之间的间隙限定的第一缓冲部分中产生等离子体; 淋浴头在垂直方向上分为两部分,第二缓冲部分由两部分之间的空间限定; 将反应气体供给到其中产生等离子体的第一缓冲部分; 并且源气体被供应到第二缓冲部分。