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    • 53. 发明授权
    • Switch device for a network element of a data transfer network
    • 交换设备用于数据传输网络的网元
    • US09548939B2
    • 2017-01-17
    • US14504650
    • 2014-10-02
    • CORIANT OY
    • Kim EnkovaaraMika Silvola
    • H04L12/863H04L12/851H04L12/803H04L12/26H04L12/823H04L12/931
    • H04L47/627H04L43/0888H04L43/0894H04L47/125H04L47/2441H04L47/32H04L47/54H04L49/506
    • A switch device for a network element includes a transfer system (110) for transferring data from ingress line interfaces of the network element to egress line interfaces of the network element in accordance with control information associated with the data. The transfer system includes a control section (111) configured to compare data traffic load to capacity available to the data traffic load at one of the egress line interfaces so as to generate a congestion indicator expressing whether a data flow (113) representing the data traffic load is a potential cause of congestion at the one of the egress line interfaces. The control section is further configured to direct a congestion control action to the data flow if the data flow is a potential cause of congestion. Thus, the congestion management related to the ingress and egress line interfaces can be carried out by the switch device.
    • 用于网络元件的交换设备包括传输系统(110),用于根据与数据相关联的控制信息将数据从网元的入口线接口传送到网元的出口线路接口。 传输系统包括控制部分(111),其被配置为将数据业务负载与在出口线路接口之一处的数据业务负载可用的容量进行比较,以便产生表示数据流(113)的拥塞​​指示符 负载是出口线路接口之一的拥塞的潜在原因。 如果数据流是拥塞的潜在原因,则控制部分还被配置为将拥塞控制动作引导到数据流。 因此,与入口和出口线路接口相关的拥塞管理可以由交换设备执行。
    • 54. 发明授权
    • Transfer device and transfer method
    • 传输设备和传送方式
    • US09172654B2
    • 2015-10-27
    • US13935432
    • 2013-07-03
    • FUJITSU LIMITED
    • Shinichi SazawaYuichi SatoHiroaki KameyamaDaichi Shimada
    • H04L12/56H04L12/863H04L1/16H04L1/00H04L1/18
    • H04L47/54H04L1/0083H04L1/1642H04L1/1838H04L1/1867
    • A transfer device increments a value of a phase ID at predetermined time intervals, and registers a packet ID of a transmitted data packet and a phase ID on a determination table in an associated manner. When having received a response packet from a receiving-side transfer device, the transfer device determines an unarrived packet on the basis of received packet IDs contained in the received response packet and packet IDs of transmitted data packets. Then, the transfer device determines whether a data packet corresponding to the unarrived packet is lost or on-the-fly from a relationship between a phase ID of the unarrived packet and the maximum phase contained in the received response packet, and retransmits the corresponding data packet only if it is lost.
    • 传送设备以预定的时间间隔增加相位ID的值,并且以相关联的方式在发送的数据分组和相位ID上登记在确定表上。 当从接收侧传送装置接收到响应分组时,传送装置根据接收到的响应分组中包含的接收到的分组ID和所发送的数据分组的分组ID来确定不受欢迎的分组。 然后,传送装置根据包含在接收到的响应分组中的无符号分组的相位ID与最大相位之间的关系,确定与该未分组分组对应的数据分组是否丢失或者即时地发送,并且重新发送对应的数据 数据包只有在丢失时才会出现。
    • 55. 发明申请
    • INSTANTANEOUS RANDOM EARLY DETECTION PACKET DROPPING
    • 现代随机早期检测包装
    • US20150263967A1
    • 2015-09-17
    • US14205824
    • 2014-03-12
    • Netronome Systems, Inc.
    • Ron Lamar Swartzentruber
    • H04L12/823H04L12/863
    • H04L47/326H04L47/29H04L47/30H04L47/54
    • A device that receives a packet descriptor and a queue number that indicates a queue stored within a memory unit, and in response determines an instantaneous queue depth of the queue. The instantaneous queue depth is used to determine a drop probability. The drop probability is used to randomly determine if the packet descriptor should be stored in the queue. The queue has a first queue depth range and a second queue depth range that do not overlap. A first drop probability is associated with the first queue depth range and a second drop probability is associated with the second queue depth range. The first drop probability is used when the queue depth is within the first queue depth range. The second drop probability is used with the queue depth is within the second queue depth range. The device includes a random value generator and a drop indicator generator.
    • 接收分组描述符的设备和指示存储在存储器单元中的队列的队列号,并且作为响应确定队列的瞬时队列深度。 瞬时队列深度用于确定丢弃概率。 丢弃概率用于随机确定包描述符是否应该存储在队列中。 队列具有不重叠的第一队列深度范围和第二队列深度范围。 第一丢弃概率与第一队列深度范围相关联,并且第二丢弃概率与第二队列深度范围相关联。 当队列深度在第一队列深度范围内时,使用第一个丢弃概率。 第二个丢弃概率用于队列深度在第二个队列深度范围内。 该装置包括随机值发生器和下降指示器发生器。
    • 56. 发明申请
    • SWITCH DEVICE FOR A NETWORK ELEMENT OF A DATA TRANSFER NETWORK
    • 用于数据传输网络的网络元件的切换装置
    • US20150098337A1
    • 2015-04-09
    • US14504650
    • 2014-10-02
    • TELLABS OY
    • Kim ENKOVAARAMika SILVOLA
    • H04L12/863H04L12/823H04L12/26H04L12/851H04L12/803
    • H04L47/627H04L43/0888H04L43/0894H04L47/125H04L47/2441H04L47/32H04L47/54H04L49/506
    • A switch device for a network element includes a transfer system (110) for transferring data from ingress line interfaces of the network element to egress line interfaces of the network element in accordance with control information associated with the data. The transfer system includes a control section (111) configured to compare data traffic load to capacity available to the data traffic load at one of the egress line interfaces so as to generate a congestion indicator expressing whether a data flow (113) representing the data traffic load is a potential cause of congestion at the one of the egress line interfaces. The control section is further configured to direct a congestion control action to the data flow if the data flow is a potential cause of congestion. Thus, the congestion management related to the ingress and egress line interfaces can be carried out by the switch device.
    • 用于网络元件的交换设备包括传输系统(110),用于根据与数据相关联的控制信息将数据从网元的入口线接口传送到网元的出口线路接口。 传输系统包括控制部分(111),其被配置为将数据业务负载与在出口线路接口之一处的数据业务负载可用的容量进行比较,以便产生表示数据流(113)的拥塞​​指示符 负载是出口线路接口之一的拥塞的潜在原因。 如果数据流是拥塞的潜在原因,则控制部分还被配置为将拥塞控制动作引导到数据流。 因此,与入口和出口线路接口相关的拥塞管理可以由交换设备执行。
    • 58. 发明申请
    • METHOD AND APPARATUS FOR SCHEDULING COMMUNICATION TRAFFIC IN ATCA-BASED EQUIPMENT
    • 用于调度基于ATCA的设备中的通信交通的方法和装置
    • US20130163420A1
    • 2013-06-27
    • US13820798
    • 2011-08-24
    • Caixia ChiFang LiuQiang LiuDong YanBin Wang
    • Caixia ChiFang LiuQiang LiuDong YanBin Wang
    • H04L12/56
    • H04L43/0894H04L43/062H04L43/067H04L43/0835H04L47/24H04L47/2425H04L47/54H04L67/10
    • A method for scheduling communication traffic in an Advanced Telecom Computing Architecture based equipment and a corresponding apparatus are provided. In the method, communication traffic information of traffic processing means in the equipment is collected; based on the collected communication traffic information, a traffic distribution rule for the traffic processing means in next time period is generated; and based on the generated traffic distribution rule, incoming communication traffic of the equipment is scheduled. The method of the invention considers the quality of service and contracted capacity of the whole equipment and the dynamic processing capability and running environment of the traffic processing means, and can balance the loads of the respective traffic processing means in the equipment with asymmetric multi-application configuration well by adaptively adjusting the distribution of the communication traffic, to guarantee the quality of service of the whole equipment.
    • 提供了一种用于在基于高级电信计算架构的设备和相应设备中调度通信业务的方法。 在该方法中,收集设备中的业务处理装置的通信业务信息; 基于所收集的通信交通信息,生成下一时间段中的交通处理装置的交通分配规则; 并基于生成的流量分配规则,调度设备的进入通信流量。 本发明的方法考虑了整个设备的服务质量和承包能力以及交通处理手段的动态处理能力和运行环境,并且可以平衡不对称多应用的设备中各个业务处理手段的负载 配置好,通过自适应调整通信流量的分布,保证整个设备的服务质量。
    • 59. 发明授权
    • Simple and resource-efficient resilient network systems
    • 简单而资源有效的弹性网络系统
    • US08279750B2
    • 2012-10-02
    • US12571180
    • 2009-09-30
    • Michael MenthJens MilbrandtAndreas ReifertPhuoc Tran-Gia
    • Michael MenthJens MilbrandtAndreas ReifertPhuoc Tran-Gia
    • H04L12/26
    • H04L47/14H04L45/00H04L45/24H04L45/50H04L47/50H04L47/522H04L47/54H04L47/626
    • The invention is related to a method for resilient multi-path connections between edge devices of a communication network. First are determined connection-specific traffic distribution functions for the multi-paths depending on a plausible failure pattern of active and inactive paths of the multi-path of this connection. Further is selected the traffic distribution function for a multi-path depending on the current failure pattern of active and an inactive paths of the multi-path of this connection and is distributed the traffic of the connection onto the path of the corresponding multi-path pursuant to the selected traffic distribution function. An essential advantage of the invention is a significant decrease of network capacity for resilient multi-path connections. Another advantage of the invention is the short reaction time in case of an outage of one or more paths of the multi-path connections.
    • 本发明涉及一种用于通信网络的边缘设备之间的弹性多路径连接的方法。 首先是针对多路径确定的连接特定流量分配功能,这取决于该连接的多路径的主动和非活动路径的合理故障模式。 此外,根据当前的活动的故障模式和该连接的多路径的不活动路径,选择多路径的流量分配功能,并将连接的流量分配到相应多路径的路径上 到所选的流量分配功能。 本发明的一个重要优点是弹性多路径连接的网络容量显着降低。 本发明的另一个优点是在多路径连接的一个或多个路径的中断的情况下的短的反应时间。