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    • 33. 发明授权
    • Packet protection method and transmission device in ring network, and program therefor
    • 环网中的分组保护方法和传输设备,并对其进行编程
    • US07385918B2
    • 2008-06-10
    • US10364519
    • 2003-02-12
    • Kazuo Takagi
    • Kazuo Takagi
    • H04L1/00
    • H04J3/085H04J3/14H04L12/437H04L69/40
    • Two transmission devices connected to a link in which a failure occurs turn back a ring. Other transmission device changes a transmission ring of an NNI packet which is a UNI packet whose transmission source is its own transmission device and which had been transmitted through the link before the failure occurs to have a reverse direction. In addition, each transmission device, upon receiving an NNI packet whose transmission destination NNI address is one or any one of a plurality of NNI addresses applied to its own transmission device, outputs the packet to a self-owned tributary port irrespectively of whether it is sent through an inner ring or an outer ring.
    • 连接到发生故障的链路的两个传输设备转回环。 其他发送装置改变作为其发送源是其自己的发送装置的UNI分组的NNI分组的发送环,并且在故障发生之前通过链路发送具有相反方向。 另外,每个发送装置在接收到发送目的地NNI地址是应用于其自己的发送装置的多个NNI地址中的一个或任一个NNI分组的NNI分组时,将该分组输出到自有支流端口,而不管是否是 通过内圈或外圈发送。
    • 35. 发明授权
    • Steel fuel conveying pipe
    • 钢燃料输送管
    • US09012031B2
    • 2015-04-21
    • US13805437
    • 2011-07-05
    • Kazuo Takagi
    • Kazuo Takagi
    • F16L9/02F02M55/02F16L58/08
    • F16L9/02F02M55/02F02M2200/05F02M2200/9038F16L58/08Y10T428/12486Y10T428/12799Y10T428/12937
    • To provide a steel fuel conveying pipe which has high resistance to corrosive fuel and maintains reliability without damaging a direct-injection engine, and connects a high-pressure pump and a direct-injection rail with each other in a gasoline direct-injection engine system, and a fuel conveying pipe suitable as a bypass pipe for coupling direct-injection rails with each other in a V-type gasoline engine. A steel fuel conveying pipe for conveying gasoline is characterized in that a Ni-plated layer is provided on the whole inner circumferential face of the fuel conveying pipe, and an anti-rust film layer composed of a Zn-plated layer and a Zn-based alloy-plated layer is further provided on the Ni-plated layer at at least one end of the fuel conveying pipe.
    • 为了提供一种具有高耐腐蚀性燃料的钢燃料输送管,并且在不损害直喷式发动机的情况下保持可靠性,并且在汽油直喷发动机系统中将高压泵和直接喷射轨彼此连接, 以及适用于在V型汽油发动机中将直接注入轨道彼此连接的旁通管的燃料输送管。 用于输送汽油的钢燃料输送管的特征在于,在燃料输送管的整个内周面上设置有镀镍层,并且由Zn镀层和Zn基镀层构成的防锈膜层 在燃料输送管的至少一端的Ni镀层上进一步设置合金镀层。
    • 36. 发明授权
    • Ring network system, failure recovery method, failure detection method, node and program for node
    • 环网系统,故障恢复方法,故障检测方法,节点节点和节点
    • US07898942B2
    • 2011-03-01
    • US11887289
    • 2006-03-31
    • Kazuo TakagiMasahiro SakauchiDaisaku Ogasahara
    • Kazuo TakagiMasahiro SakauchiDaisaku Ogasahara
    • H04L12/42H04L12/437H04L12/56
    • H04L41/0654H04L41/12
    • In a multi-ring network with a plurality of rings to which RPR is applied connected, high-speed failure recovery is enabled when a failure occurs between the rings. The contact nodes 700-1 and 700-3 connected to the living inter-link 505 periodically transmit and receive a KeepAlive signal to/from each other. Then, when a KeepAlive signal fails to arrive for a fixed time period, determination is made that the inter-link 505 develops a fault to broadcast-transmit an inter-link failure notification RPR-MAC frame indicative of failure occurrence on the inter-link to each node. A contact node as a transmission source of the inter-link failure notification RPR-MAC frame and each node having received the inter-link failure notification RPR-MAC frame immediately flush learning contents of their own learning data bases. A contact node connected to the spare inter-link 506 switches the spare inter-link 506 to a forwarding state.
    • 在连接有RPR的多个环的多环网络中,在环之间发生故障时,能够进行高速故障恢复。 连接到生活链路505的接触节点700-1和700-3周期性地向彼此发送和接收KeepAlive信号。 然后,当KeepAlive信号在固定时间段内不能到达时,确定链路间链路505发生故障以广播发送指示链路间故障发生的链路间故障通知RPR-MAC帧 到每个节点。 作为链路间故障通知RPR-MAC帧的发送源的接触节点和已经接收到链路间故障通知RPR-MAC帧的每个节点立即刷新其自己的学习数据库的学习内容。 连接到备用链路间506的联系节点将备用链路间506切换到转发状态。
    • 37. 发明申请
    • MOBILE TERMINAL, STORE-AND-FORWARD MULTIHOP COMMUNICATION METHOD AND PROGRAM
    • 移动终端,存储和前进多路通信方法和程序
    • US20090305708A1
    • 2009-12-10
    • US12481898
    • 2009-06-10
    • Junichiro MatsuiKazuo TakagiHideaki Tani
    • Junichiro MatsuiKazuo TakagiHideaki Tani
    • H04W40/00H04M1/00
    • H04W76/12H04W88/04
    • A mobile terminal includes a mobile phone function unit, a storing unit, a communication control unit, and a store-and-forward multihop communication function unit. The mobile phone function unit confirms status of connection with a mobile base station and exchanges information with the mobile base station when the status of connection is a connection state. The storing unit stores information received and generated by the mobile phone function unit. The communication control unit receives connection information including the status of connection from the mobile phone function unit and generates a control signal when the connection information indicates a disconnection state. The store-and-forward multihop communication function unit builds a first session with a first mobile terminal after starting in response to the control signal, stores information received from the first mobile terminal and generated information in the storing unit, transmits information stored in the storing unit after building a second session with a second mobile terminal, and stores information received from the second mobile terminal in the storing unit.
    • 移动终端包括移动电话功能单元,存储单元,通信控制单元和存储转发多跳通信功能单元。 当连接状态为连接状态时,移动电话功能单元确认与移动基站的连接状态,并与移动基站交换信息。 存储单元存储由移动电话功能单元接收和生成的信息。 所述通信控制单元从所述移动电话功能单元接收包括连接状态的连接信息,并且当所述连接信息指示断开状态时,生成控制信号。 存储转发多跳通信功能单元在响应于控制信号开始之后与第一移动终端建立第一会话,将从第一移动终端接收的信息和生成的信息存储在存储单元中,发送存储在存储中的信息 在与第二移动终端建立第二会话之后,将从第二移动终端接收的信息存储在存储单元中。
    • 38. 发明申请
    • Ring Network System, Failure Recovery Method, Failure Detection Method, Node and Program for Node
    • 环网系统,故障恢复方法,故障检测方法,节点节点和节点
    • US20090052317A1
    • 2009-02-26
    • US11887289
    • 2006-03-31
    • Kazuo TakagiMasahiro SakauchiDaisaku Ogasahara
    • Kazuo TakagiMasahiro SakauchiDaisaku Ogasahara
    • H04L12/24H04L12/28
    • H04L41/0654H04L41/12
    • In a multi-ring network with a plurality of rings to which RPR is applied connected, high-speed failure recovery is enabled when a failure occurs between the rings. The contact nodes 700-1 and 700-3 connected to the living inter-link 505 periodically transmit and receive a KeepAlive signal to/from each other. Then, when a KeepAlive signal fails to arrive for a fixed time period, determination is made that the inter-link 505 develops a fault to broadcast-transmit an inter-link failure notification RPR-MAC frame indicative of failure occurrence on the inter-link to each node. A contact node as a transmission source of the inter-link failure notification RPR-MAC frame and each node having received the inter-link failure notification RPR-MAC frame immediately flush learning contents of their own learning data bases. A contact node connected to the spare inter-link 506 switches the spare inter-link 506 to a forwarding state.
    • 在连接有RPR的多个环的多环网络中,在环之间发生故障时,能够进行高速故障恢复。 连接到生活链路505的接触节点700-1和700-3周期性地向彼此发送和接收KeepAlive信号。 然后,当KeepAlive信号在固定时间段内不能到达时,确定链路间链路505发生故障以广播发送指示链路间故障发生的链路间故障通知RPR-MAC帧 到每个节点。 作为链路间故障通知RPR-MAC帧的发送源的接触节点和已经接收到链路间故障通知RPR-MAC帧的每个节点立即刷新其自己的学习数据库的学习内容。 连接到备用链路间506的联系节点将备用链路间506切换到转发状态。