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    • 2. 发明授权
    • Communication transmitting apparatus and communication transmitting method
    • 通信发送装置和通信发送方法
    • US08291113B2
    • 2012-10-16
    • US12285240
    • 2008-09-30
    • Keiji MiyazakiAkira NagataShinya KanoYasuki Fujii
    • Keiji MiyazakiAkira NagataShinya KanoYasuki Fujii
    • G06F15/16
    • H04L45/50H04L45/02
    • When opposed communication transmitting apparatuses A and C are connected in a physical configuration thorough a communication transmitting apparatus B, if an interface configuration changing command is input to the communication transmitting apparatus B, the interface configuration is changed in the communication transmitting apparatus B and virtual connection is achieved such that the opposed communication transmitting apparatuses A and C pass through the communication transmitting apparatus B to directly connect an interface A1 and an interface C1. In this situation, since the GMPLS operation target apparatuses are only the communication transmitting apparatus A and the communication transmitting apparatus C and the communication transmitting apparatus B is a non-target apparatus of the GMPLS operation, the GMPLS scalability problem is solved and optical signals may be transferred at higher speed.
    • 当相对的通信发送装置A和C通过通信发送装置B的物理配置连接时,如果向通信发送装置B输入了接口配置改变命令,则在通信发送装置B和虚拟连接中改变接口配置 使得相对的通信发送装置A和C通过通信发送装置B直接连接接口A1和接口C1。 在这种情况下,由于GMPLS操作对象装置仅是通信发送装置A,通信发送装置C和通信发送装置B是GMPLS操作的非目标装置,所以解决了GMPLS可伸缩性问题,光信号可能 以更高的速度转移。
    • 3. 发明申请
    • COMMUNICATION APPARATUS
    • 通讯设备
    • US20100142546A1
    • 2010-06-10
    • US12689534
    • 2010-01-19
    • Kouichirou AmemiyaShinya KanoYasuki Fujii
    • Kouichirou AmemiyaShinya KanoYasuki Fujii
    • H04L12/56
    • H04L45/04H04L43/0811H04L45/02H04L45/021H04L45/50
    • A communication apparatus stores therein link information indicating a network connection status of an entire hierarchical network, collects link information indicating a network connection status in its own area in predetermined cycles, and transmits the collected link information to another area assigned a level different from a level assigned to its own area. When receiving link information from another area assigned a different level, the communication apparatus determines whether the received link information is new link information newer than link information stored in a predetermined storage unit; when it is determined that the received link information is new link-information, the communication apparatus stores the new link information into the predetermined storage unit and advertises it in its own area; by contrast, when it is determined that the received link information is not new link-information, the communication apparatus discards the received link information without storing and advertising.
    • 通信装置存储指示整个分级网络的网络连接状态的链接信息,以预定周期收集表示其本身区域中的网络连接状态的链接信息,并将所收集的链接信息发送到指定了与级别不同的级别的另一区域 分配到自己的区域。 当从分配了不同等级的另一区域接收到链接信息时,通信装置确定所接收到的链接信息是否比存储在预定存储单元中的链接信息更新; 当确定接收到的链路信息是新的链路信息时,通信装置将新的链路信息存储到预定的存储单元中并在其自己的区域中通告它; 相反,当确定接收到的链接信息不是新的链接信息时,通信设备在没有存储和广告的情况下丢弃所接收的链接信息。
    • 4. 发明申请
    • SIGNALING APPARATUS AND SIGNALING METHOD
    • 信号装置和信号方法
    • US20100008262A1
    • 2010-01-14
    • US12560551
    • 2009-09-16
    • Yasuki FujiiShinya KanoKouichirou Amemiya
    • Yasuki FujiiShinya KanoKouichirou Amemiya
    • H04L12/28
    • H04L45/34H04L45/10Y10T409/40105
    • A signaling apparatus is applied to a node constituting a network including internal network to network interface (INNI) domains having INNI interfaces between a plurality of networks in an area and external network to network interface (ENNI) domains having ENNI interfaces that connect the INNI domains. The apparatus includes a processing unit that processes a signaling message for setting a path when an end-to-end path that passes through the INNI domains and the ENNI domains that connect the INNI domains is set in response to the signaling message, a storing unit that holds information on types of links between an own node and adjacent nodes, and a judging unit that judges whether the own node is a connection end point of the INNI domains or the ENNI domains with reference to route information in the message and the information on the types of the links held in the storing unit.
    • 信令装置被应用于构成网络的节点,该节点包括具有在区域中的多个网络之间的INNI接口的网络接口(INNI)域的内部网络,以及具有连接INNI域的具有ENNI接口的网络接口(ENNI)域 。 所述装置包括:处理单元,响应于所述信令消息,当经过所述INNI域的端到端路径和连接所述INNI域的ENNI域被设置时,处理用于设置路径的信令消息;存储单元 其保存关于自身节点和相邻节点之间的链接类型的信息,以及判断单元,其参考消息中的路由信息​​来判断自身节点是INNI域还是ENNI域的连接终点,以及关于 保存在存储单元中的链接的类型。
    • 5. 发明申请
    • Signaling system
    • 信令系统
    • US20070019541A1
    • 2007-01-25
    • US11259014
    • 2005-10-26
    • Yasuki FujiiKeiji MiyazakiShinya KanouAkira NagataTakuya OkamotoTomoyuki Harada
    • Yasuki FujiiKeiji MiyazakiShinya KanouAkira NagataTakuya OkamotoTomoyuki Harada
    • H04J1/16
    • H04L12/4637H04L45/00H04L45/22
    • A signaling system able to improve the efficiency of utilization of network resources and autonomously set a correct spare route, that is, a signaling system setting a path passing through two rings interconnected by a plurality of nodes by signaling wherein each node is provided with an inter-node connection information table including topology information in the network and a branch node judgment unit for judging whether a home node is a branch node based on the content of the inter-node connection information table and wherein when the home node receives a signaling message for setting a working path and it is judged that the node is a branch node, the signaling of the spare path is started for the destination node of the spare path based on the information in the inter-node connection information table so as to autonomous set the spare path.
    • 一种信号系统,其能够提高网络资源的利用效率,并且自主地设置正确的备用路由,即,信令系统设置通过信令通过多个节点互连的两个环路的路径,其中每个节点被提供有一个互连 - 包括网络中的拓扑信息的节点连接信息表和基于节点间连接信息表的内容来判断家庭节点是否是分支节点的分支节点判断单元,并且其中当家庭节点接收到用于 设置工作路径,判断为节点为分支节点,基于节点间连接信息表中的信息,为备用路径的目的地节点启动备用路径的信令,自主设置 备用路径。
    • 8. 发明申请
    • SIGNAL TRANSMISSION METHOD AND TRANSMISSION DEVICE
    • 信号传输方法和传输设备
    • US20110103222A1
    • 2011-05-05
    • US12913061
    • 2010-10-27
    • Ryoichi MUTOHYasuki FujiiToru Katagiri
    • Ryoichi MUTOHYasuki FujiiToru Katagiri
    • G06F11/00
    • H04L12/437H04J3/085H04J2203/0042H04J2203/006
    • A signal transmission method includes causing each of a plurality of nodes to transfer, using the actually used line, a second signal in a second layer, in which one or a plurality of first signals in a first layer are contained, to a node adjacent in the first or the second direction when each of the plurality of nodes transmits or receives the first signal, when no failure occurs in a transmission path in a network, and causing a first node, located at an end of a failure point, to switch a transmission direction of the second signal and to send out the second signal to the backup line, and causing a second node, which is a transmission source or a reception destination of the first signal, to select one of the first and second directions, when a failure occurs in the transmission path in the network.
    • 信号传输方法包括使多个节点中的每一个使用实际使用的线路将第一层中的一个或多个第一信号包含在第二层中的第二信号传送到邻近的节点 当所述多个节点中的每一个节点发送或接收所述第一信号时,当在网络中的传输路径中没有发生故障,并且使位于故障点的末端的第一节点切换到所述第一或第二方向时, 并且将第二信号发送到备用线路,并且使作为第一信号的发送源或接收目的地的第二节点选择第一和第二方向中的一个,当a 在网络中的传输路径中发生故障。
    • 9. 发明申请
    • Communication transmitting apparatus and communication transmitting method
    • 通信发送装置和通信发送方法
    • US20090182801A1
    • 2009-07-16
    • US12285240
    • 2008-09-30
    • Keiji MiyazakiAkira NagataShinya KanoYasuki Fujii
    • Keiji MiyazakiAkira NagataShinya KanoYasuki Fujii
    • G06F15/16
    • H04L45/50H04L45/02
    • When opposed communication transmitting apparatuses A and C are connected in a physical configuration thorough a communication transmitting apparatus B, if an interface configuration changing command is input to the communication transmitting apparatus B, the interface configuration is changed in the communication transmitting apparatus B and virtual connection is achieved such that the opposed communication transmitting apparatuses A and C pass through the communication transmitting apparatus B to directly connect an interface A1 and an interface C1. In this situation, since the GMPLS operation target apparatuses are only the communication transmitting apparatus A and the communication transmitting apparatus C and the communication transmitting apparatus B is a non-target apparatus of the GMPLS operation, the GMPLS scalability problem is solved and optical signals may be transferred at higher speed.
    • 当相对的通信发送装置A和C通过通信发送装置B的物理配置连接时,如果向通信发送装置B输入了接口配置改变命令,则在通信发送装置B和虚拟连接中改变接口配置 使得相对的通信发送装置A和C通过通信发送装置B直接连接接口A1和接口C1。 在这种情况下,由于GMPLS操作对象装置仅是通信发送装置A,通信发送装置C和通信发送装置B是GMPLS操作的非目标装置,所以解决了GMPLS可伸缩性问题,光信号可能 以更高的速度转移。