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    • 2. 发明授权
    • Ring-shaped redundant communication path control method
    • 环形冗余通信路径控制方法
    • US07961596B2
    • 2011-06-14
    • US12281773
    • 2007-03-27
    • Masahiro MaruyoshiMuneyoshi SuzukiKunio HatoKatsuya Minami
    • Masahiro MaruyoshiMuneyoshi SuzukiKunio HatoKatsuya Minami
    • H04J3/14
    • H04L12/437H04L12/40182H04L43/0811
    • In a ring redundant communication path control method, each of transfer apparatuses periodically transmits an inspection frame for inspecting a communication path, detects a failure of the communication path when the inspection frame is not received for a fixed time, transmits a non-arrival notification frame for notifying that the inspection frame has not arrived yet, and detects a failure of the communication path when the non-arrival notification frame is received. Each of the transfer apparatuses closes, when a failure is detection, a port in which the failure is detected, transmits an open command frame for commanding to open a normally closed port from the other port other than the closed port, transfers an open command frame when the open command frame is received, and opens the normally closed port when the other port other than the closed port in which the failure is detected, the port in which the open command frame is detected, or the other port configuring a ring redundant communication path same as that of the port is the normally closed port.
    • 在环形冗余通信路径控制方法中,每个传送装置周期性地发送用于检查通信路径的检查帧,当固定时间未接收到检查帧时检测通信路径的故障,发送不到达通知帧 用于通知检查帧尚未到达,并且当接收到未到达通知帧时检测通信路径的故障。 每个传送装置关闭当检测到故障时检测到故障的端口,发送用于命令从除了关闭端口之外的其他端口打开常闭端口的打开命令帧,将打开的命令帧 当接收到开放命令帧时,当检测到故障的封闭端口以外的其他端口,检测到开放命令帧的端口或配置环形冗余通信的其他端口时,打开常闭端口 与端口相同的路径是常闭端口。
    • 4. 发明申请
    • RING-SHAPED REDUNDANT COMMUNICATION PATH CONTROL METHOD
    • 环形冗余通信路径控制方法
    • US20090073874A1
    • 2009-03-19
    • US12281773
    • 2007-03-27
    • Masahiro MaruyoshiMuneyoshi SuzukiKunio HatoKatsuya Minami
    • Masahiro MaruyoshiMuneyoshi SuzukiKunio HatoKatsuya Minami
    • H04L12/24
    • H04L12/437H04L12/40182H04L43/0811
    • In a ring redundant communication path control method, each of transfer apparatuses periodically transmits an inspection frame for inspecting a communication path, detects a failure of the communication path when the inspection frame is not received for a fixed time, transmits a non-arrival notification frame for notifying that the inspection frame has not arrived yet, and detects a failure of the communication path when the non-arrival notification frame is received. Each of the transfer apparatuses closes, when a failure is detection, a port in which the failure is detected, transmits an open command frame for commanding to open a normally closed port from the other port other than the closed port, transfers an open command frame when the open command frame is received, and opens the normally closed port when the other port other than the closed port in which the failure is detected, the port in which the open command frame is detected, or the other port configuring a ring redundant communication path same as that of the port is the normally closed port.
    • 在环形冗余通信路径控制方法中,每个传送装置周期性地发送用于检查通信路径的检查帧,当固定时间未接收到检查帧时检测通信路径的故障,发送不到达通知帧 用于通知检查帧尚未到达,并且当接收到未到达通知帧时检测通信路径的故障。 每个传送装置关闭当检测到故障时检测到故障的端口,发送用于命令从除了关闭端口之外的另一端口打开常闭端口的打开命令帧,将打开的命令帧 当接收到开放命令帧时,当检测到故障的封闭端口以外的其他端口,检测到开放命令帧的端口或配置环形冗余通信的其他端口时,打开常闭端口 与端口相同的路径是常闭端口。
    • 5. 发明授权
    • Router apparatus provided with output port circuit including storage unit, and method of controlling output port circuit of router apparatus
    • 设置有包括存储单元的输出端口电路的路由器设备和控制路由器设备的输出端口电路的方法
    • US07321594B2
    • 2008-01-22
    • US10736984
    • 2003-12-17
    • Koso MurakamiHideki TodeKazuhiko KinoshitaKatsuya Minami
    • Koso MurakamiHideki TodeKazuhiko KinoshitaKatsuya Minami
    • H04L12/28H04L12/56
    • H04L45/00H04L45/60H04L49/205H04L49/25H04L49/3009
    • An output port circuit is provided for a router apparatus which routes and transmits a received packet. Each flow is constituted by continuous packets and belongs to a bandwidth-guaranteed class or a best-effort class. A controller controls storage and reading of a packet into and from a storage unit. Upon allocating a basic volume that is a criterion of a memory size stored in the storage unit to each flow to which the packet to be transmitted belongs, the controller manages the basic volume of each flow of the packet belonging to the bandwidth-guaranteed class by individually allocating the basic volume by the memory size required by each flow, and manages the basic volume of each flow of the packets belonging to the best-effort class by collectively allocating the memory size obtained by subtracting a sum of respective basic volumes allocated to the bandwidth-guaranteed class from an entire memory size.
    • 为路由器设备提供输出端口电路,路由器设备路由和发送接收的分组。 每个流由连续分组构成,属于带宽保证类或尽力而为类。 一个控制器控制一个数据包进出存储单元的存储和读取。 在将存储在存储单元中的存储器大小的标准的基本卷分配给要发送的分组所属的每个流所属的控制器,控制器将通过以下方式管理属于带宽保证类的分组的每个流的基本卷: 单独地分配基本卷乘以每个流所需的存储器大小,并通过共同分配通过减去分配给该目标的相应基本卷的总和而获得的存储器大小来管理属于尽力而为类的分组的每个流的基本卷 带宽保证的类从整个内存大小。
    • 6. 发明授权
    • Hydraulic automatic tensioner and power transmitting mechanism
    • 液压自动张紧器和动力传递机构
    • US06899650B2
    • 2005-05-31
    • US10383516
    • 2003-03-10
    • Kazuma OkudaKatsuya MinamiShigeru AokiTadashi FujiwaraShogo Yonemoto
    • Kazuma OkudaKatsuya MinamiShigeru AokiTadashi FujiwaraShogo Yonemoto
    • F02B67/06F16H7/08F16H7/12F16H7/22
    • F16H7/129F16H2007/0806F16H2007/0812F16H2007/0859
    • A hydraulic automatic tensioner for adjusting the tension of a bell includes a first member with a piston formed integrally, a second member combined with the first member and axially movable relative to the first member, a cylinder formed integrally with the second member, together defining a fluid-reservoir chamber for hydraulic fluid, axially slidably receiving the piston, and a spring pushing the members apart. The piston and cylinder form a pressure chamber filled with hydraulic fluid. The second member has a leak passage through which fluid flows from the pressure chamber into the fluid-reservoir chamber. A control valve is placed in the leak passage, inhibiting flow of fluid from the pressure chamber into the fluid-reservoir chamber. A control device moves the control valve to close the leak passage when activated and makes it ineffective when deactivated so that the pressure chamber communicates with the fluid-reservoir chamber via the leak passage.
    • 一种用于调节喇叭张力的液压自动张紧装置,包括具有一体形成的活塞的第一构件,与该第一构件组合并与该第一构件可轴向移动的第二构件,与该第二构件一体形成的圆筒, 用于液压流体的流体储存室,轴向可滑动地接收活塞,以及弹簧推动构件分开。 活塞和气缸形成一个充满液压油的压力室。 第二构件具有泄漏通道,液体通过该通道流体从压力室流入流体储存室。 控制阀被放置在泄漏通道中,从而抑制流体从压力室流入流体储存室。 控制装置在启动时移动控制阀以关闭泄漏通道,并且在停用时使其无效,使得压力室经由泄漏通道与流体储存室连通。