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    • 3. 发明授权
    • Packet transmission system and fault recovery method
    • 分组传输系统和故障恢复方法
    • US08711686B2
    • 2014-04-29
    • US13219804
    • 2011-08-29
    • Kazuo TakagiZhenlong CuiMasaki UmayabashiAkira Sakurai
    • Kazuo TakagiZhenlong CuiMasaki UmayabashiAkira Sakurai
    • H04L12/26H04L12/56H04L1/22H04J14/02
    • H04L45/28H04J14/0294H04J14/0295H04L1/22H04L41/0659H04L41/0663H04L45/22
    • Between a first pair of termination nodes, a first current-use packet transmission path and at least one first spare packet transmission path are defined. Between a second pair of termination nodes, a second current-use packet transmission path and at least one second spare packet transmission path are defined. When no network fault occurs, packets are transmitted between the pairs of nodes in a 1:1 transfer mode in which the pairs transfer packets via both current-use packet transmission paths only. When a network fault occurs in the first current-use packet transmission path, both transmissions are switched from a 1:1 transfer mode to a 1+1 transfer mode, in which the first pair of nodes transfer packets by using the first current-use packet transmission path and the first spare packet transmission path, and the second pair transfer packets by using the second current-use packet transmission path and the second spare packet transmission path.
    • 在第一对终端节点之间,定义第一当前使用分组传输路径和至少一个第一备用分组传输路径。 在第二对终端节点之间,定义第二当前使用分组传输路径和至少一个第二备用分组传输路径。 当没有发生网络故障时,分组以1:1传输模式在两对节点之间传输,其中对只通过当前使用的分组传输路径传输分组。 当在第一当前使用分组传输路径中出现网络故障时,两个传输从1:1传输模式切换到1 + 1传输模式,其中第一对节点通过使用第一当前使用 分组传输路径和第一备用分组传输路径,并且第二对传输分组通过使用第二当前使用分组传输路径和第二备用分组传输路径。
    • 6. 发明申请
    • COMMUNICATION APPARATUS, COMMUNICATION SYSTEM AND COMMUNICATION METHOD
    • 通信设备,通信系统和通信方法
    • US20120020232A1
    • 2012-01-26
    • US13182362
    • 2011-07-13
    • DAISUKE YOSHIOKAMasaki UmayabashiKazuo TakagiHiroshi TanakaZhenlong Cui
    • DAISUKE YOSHIOKAMasaki UmayabashiKazuo TakagiHiroshi TanakaZhenlong Cui
    • H04L12/26
    • H04L43/10H04L43/0829
    • A communication apparatus including: a counter storage unit storing a reception counter value of the apparatus when a specific frame is received; a measurement unit measuring the number of frame losses occurring between the apparatus and the preceding apparatus on the basis of the reception counter value of the apparatus, a transmission counter value of a source apparatus of the specific frame included in the specific frame and the total number of frame losses between the source apparatus and the preceding apparatus of the apparatus, when the specific frame is received; a transmission unit transmitting the specific frame; and a frame control unit adding, to the specific frame, loss information associating the number of frame losses occurring between the apparatus and the preceding apparatus with an identifier of the apparatus and forwarding the specific frame to the transmission unit, when the frame loss occurs, and forwarding the specific frame to the transmission unit without adding the loss information to the specific frame, when no frame loss occurs.
    • 一种通信装置,包括:计数器存储单元,当接收到特定帧时,存储所述装置的接收计数值; 测量单元,基于设备的接收计数器值测量装置与先前装置之间发生的帧丢失的数量,包括在特定帧中的特定帧的源装置的发送计数器值和总数 当接收到特定帧时,源设备和设备的先前设备之间的帧丢失; 发送单元,发送特定帧; 以及帧控制单元,在发生帧丢失时,向所述特定帧添加将所述装置与前一装置之间出现的帧丢失数与所述装置的标识符相关联并将所述特定帧转发到所述传输单元的丢失信息, 并且当没有发生帧丢失时,将特定帧转发到发送单元,而不将丢失信息添加到特定帧。
    • 7. 发明授权
    • Packet filter-based clock synchronization system, apparatus, and method, and program thereof
    • 基于分组滤波器的时钟同步系统,装置和方法及其程序
    • US08731036B2
    • 2014-05-20
    • US13129755
    • 2009-11-20
    • Masaki UmayabashiZhenlong CuiKazuo Takagi
    • Masaki UmayabashiZhenlong CuiKazuo Takagi
    • H04L7/00
    • H04J3/0664H03L7/08H04J3/0632
    • A clock synchronization system synchronizes a clock of a slave node with a clock of a master node. The master node includes a packet transmitting unit that transmits a packet including a time stamp (TS) to the slave node. The slave node includes: a packet receiving unit that receives the packet transmitted from the master node; a packet filter unit that calculates as a value of delay of the packet a difference between a TS on the clock of the slave node when the packet is received and the TS of the packet received, corrects the value of the delay of the packet or a threthold for the delay of the packet, and performs filter processing on the packet received from the packet receiving unit based on the value of the delay of the packet and the threshold for the delay of the packet; and a phase synchronization unit that outputs the clock of the slave node based on the TS included in the packet employed.
    • 时钟同步系统将从节点的时钟与主节点的时钟同步。 主节点包括分组发送单元,该分组发送单元将包括时间戳(TS)的分组发送到从节点。 从节点包括:分组接收单元,接收从主节点发送的分组; 分组过滤器单元,当分组接收到从属节点的时钟上的TS与接收到的分组的TS之间的时间差时,计算分组的延迟值,校正分组的延迟的值或 考虑到分组的延迟,并且基于分组的延迟的值和分组的延迟的阈值对从分组接收单元接收的分组执行滤波处理; 以及相位同步单元,其基于包含在所使用的分组中的TS输出从节点的时钟。
    • 9. 发明申请
    • DELAY MEASUREMENT SYSTEM AND DELAY MEASUREMENT METHOD, AS WELL AS DELAY MEASUREMENT DEVICE AND DELAY MEASUREMENT PROGRAM
    • 延迟测量系统和延迟测量方法,如延迟测量设备和延迟测量程序
    • US20130170390A1
    • 2013-07-04
    • US13823534
    • 2011-09-21
    • Masaki UmayabashiZhenlong CuiKazuo Takagi
    • Masaki UmayabashiZhenlong CuiKazuo Takagi
    • H04L12/26
    • H04L43/0852H04L47/28H04L47/32
    • The present invention measures 1-way delay without equipping all nodes with special functionality in a situation in which time has not been synchronized. The delay measurement system of the present invention has a transmission origin node and a transmission destination node which is connected to the transmission origin node through a network including relay nodes, and measures the delay time from the transmission origin node to the transmission destination node direction, wherein the transmission origin node generates a clock. On the basis of the generated clock, delay measurement packets are generated at regular periods. The generated delay measurement packets are transmitted to the transmission destination node. The transmission destination node selects the delay measurement packets from among the received frames. The delay received by the delay measurement packets in the network between the transmission origin node to the node itself is measured.
    • 本发明在时间尚未同步的情况下测量单向延迟而不对具有特殊功能的所有节点进行装配。 本发明的延迟测量系统具有通过包括中继节点的网络连接到发送源节点的发送源节点和发送目的地节点,并且测量从发送起始节点到发送目的地节点方向的延迟时间, 其中发送源节点生成时钟。 在生成的时钟的基础上,定期生成延迟测量数据包。 生成的延迟测量分组被发送到发送目的地节点。 发送目的地节点从接收到的帧中选择延迟测量分组。 测量由发送源节点到节点本身之间的网络中的延迟测量分组所接收的延迟。
    • 10. 发明授权
    • Delay measurement system and delay measurement method, as well as delay measurement device and delay measurement program
    • 延时测量系统和延时测量方法,以及延时测量装置和延时测量程序
    • US09300558B2
    • 2016-03-29
    • US13823534
    • 2011-09-21
    • Masaki UmayabashiZhenlong CuiKazuo Takagi
    • Masaki UmayabashiZhenlong CuiKazuo Takagi
    • H04L12/70H04L12/26H04L12/823H04L12/841
    • H04L43/0852H04L47/28H04L47/32
    • The present invention measures 1-way delay without equipping all nodes with special functionality in a situation in which time has not been synchronized. The delay measurement system of the present invention has a transmission origin node and a transmission destination node which is connected to the transmission origin node through a network including relay nodes, and measures the delay time from the transmission origin node to the transmission destination node direction, wherein the transmission origin node generates a clock. On the basis of the generated clock, delay measurement packets are generated at regular periods. The generated delay measurement packets are transmitted to the transmission destination node. The transmission destination node selects the delay measurement packets from among the received frames. The delay received by the delay measurement packets in the network between the transmission origin node to the node itself is measured.
    • 本发明在时间尚未同步的情况下测量单向延迟而不对具有特殊功能的所有节点进行装配。 本发明的延迟测量系统具有通过包括中继节点的网络连接到发送源节点的发送源节点和发送目的地节点,并且测量从发送起始节点到发送目的地节点方向的延迟时间, 其中发送源节点生成时钟。 在生成的时钟的基础上,定期生成延迟测量数据包。 生成的延迟测量分组被发送到发送目的地节点。 发送目的地节点从接收到的帧中选择延迟测量分组。 测量由发送源节点到节点本身之间的网络中的延迟测量分组所接收的延迟。