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    • 2. 发明申请
    • NETWORK SYSTEM AND ROUTING METHOD
    • 网络系统和路由方法
    • US20140140216A1
    • 2014-05-22
    • US13794057
    • 2013-03-11
    • INVENTEC (PUDONG) TECHNOLOGY CORPORATIONINVENTEC CORPORATION
    • Te-Yen LiuChien-Chih Lin
    • H04L12/70
    • H04L47/12H04L45/02H04L45/123H04L45/125H04L45/42
    • The routing method includes: receiving identification information of nodes to construct a network topology diagram and receiving support rates of connection ports through a controller; monitoring data rates of the connection ports through the controller; receiving a route planning request through the controller; separately calculating costs of links according to the data rates of the connection ports and the support rates of the connection ports after receiving the route planning request through the controller; searching a plurality of candidate paths between a source-destination pair according to the route planning request and the network topology diagram through the controller; summing the costs of links passed by each candidate path to acquire a sum of link-cost of each candidate path through the controller; and, selecting one of the candidate paths with the smallest sum of link-cost as a packet transmitting path between the source-destination pair through the controller.
    • 路由方法包括:接收节点的识别信息,构建网络拓扑图,并通过控制器接收连接端口的支持率; 通过控制器监视连接端口的数据速率; 通过控制器接收路线规划请求; 在通过控制器接收到路由规划请求后,根据连接端口的数据速率和连接端口的支持率分别计算链路的成本; 根据路由规划请求,通过控制器搜索源 - 目的地对之间的多个候选路径和网络拓扑图; 将通过每个候选路径的链路的成本加起来,以通过控制器获取每个候选路径的链路成本之和; 并且通过控制器选择具有最小链路成本和的候选路径之一作为源 - 目的地对之间的分组发送路径。
    • 3. 发明授权
    • Network communication system and network communication method
    • 网络通信系统和网络通信方式
    • US09008098B2
    • 2015-04-14
    • US13802141
    • 2013-03-13
    • Inventec (Pudong) Technology CorporationInventec Corporation
    • Jenn-Huei TsengShih-Hao WuYi-Kuan WuTe-Yen Liu
    • H04L12/28H04L12/743H04L12/931H04L12/935
    • H04L45/7457H04L49/3009H04L49/70
    • A network communication system comprises a cloud network and at least one physical machine. The cloud network comprises at least one physical switch. Each the physical machine comprises a plurality of virtual machines and a virtual switch. Each of the virtual machines is connected to the at least one physical switch in the cloud network through the virtual switch. The virtual switch encapsulates a destination machine address of an egress frame sent by the virtual machines, attaches a destination switch address to the egress frame to be forwarded to the at least one physical switch, and receives and analyzes an ingress frame obtained from the at least one physical switch, so as to convert the destination switch address of the ingress frame to the destination machine address, for forwarding the ingress frame to one of the virtual machines.
    • 网络通信系统包括云网络和至少一个物理机器。 云网络包括至少一个物理交换机。 每个物理机器包括多个虚拟机和虚拟交换机。 每个虚拟机通过虚拟交换机连接到云网络中的至少一个物理交换机。 虚拟交换机封装由虚拟机发送的出口帧的目的地机器地址,将目的地交换机地址附加到出站帧,以转发到至少一个物理交换机,并接收并分析从至少一个 一个物理交换机,以将入口帧的目的地交换机地址转换为目的地机器地址,用于将入口帧转发到其中一个虚拟机。
    • 4. 发明授权
    • Network system and load balancing method
    • 网络系统和负载平衡方法
    • US09049131B2
    • 2015-06-02
    • US13792230
    • 2013-03-11
    • Inventec (Pudong) Technology CorporationINVENTEC CORPORATION
    • Te-Yen LiuChien-Chih Lin
    • H04L12/26H04L12/801
    • H04L47/12H04L45/125H04L45/42H04L47/11
    • The load balancing method includes: receiving identify information of the nodes to construct a network topology diagram and receiving support rates of connection ports through a controller; monitoring average data rates of the connection ports through the controller; when the average data rate of one of the connection ports is in excess of a congestion criteria, searching a packet flow with the highest data rate among packet flows passing through the connection port of which the average data rate is in excess of the congestion criteria through the controller; and performing a shortest path first algorithm according to the packet flow with the highest data rate and the network topology diagram, wherein the computed connection ports do not include the connection port of which the average data rate is in excess of the congestion criteria; and a new transmitting path is acquired.
    • 负载均衡方法包括:接收节点的识别信息,构建网络拓扑图,并通过控制器接收连接端口的支持率; 通过控制器监视连接端口的平均数据速率; 当一个连接端口的平均数据速率超过拥塞标准时,在通过平均数据速率超过拥塞标准的连接端口的数据包流中搜索具有最高数据速率的数据包流, 控制器; 根据具有最高数据速率的分组流和网络拓扑图,执行最短路径优先算法,其中所计算的连接端口不包括平均数据速率超过拥塞标准的连接端口; 并获取新的发送路径。
    • 5. 发明授权
    • Network system and routing method
    • 网络系统和路由方法
    • US08897141B2
    • 2014-11-25
    • US13794057
    • 2013-03-11
    • Inventec (Pudong) Technology CorporationInventec Corporation
    • Te-Yen LiuChien-Chih Lin
    • H04L12/28H04L12/801H04L12/729H04L12/751H04L12/721H04L12/717
    • H04L47/12H04L45/02H04L45/123H04L45/125H04L45/42
    • The routing method includes: receiving identification information of nodes to construct a network topology diagram and receiving support rates of connection ports through a controller; monitoring data rates of the connection ports through the controller; receiving a route planning request through the controller; separately calculating costs of links according to the data rates of the connection ports and the support rates of the connection ports after receiving the route planning request through the controller; searching a plurality of candidate paths between a source-destination pair according to the route planning request and the network topology diagram through the controller; summing the costs of links passed by each candidate path to acquire a sum of link-cost of each candidate path through the controller; and, selecting one of the candidate paths with the smallest sum of link-cost as a packet transmitting path between the source-destination pair through the controller.
    • 路由方法包括:接收节点的识别信息,构建网络拓扑图,并通过控制器接收连接端口的支持率; 通过控制器监视连接端口的数据速率; 通过控制器接收路线规划请求; 在通过控制器接收到路由规划请求后,根据连接端口的数据速率和连接端口的支持率分别计算链路的成本; 根据路由规划请求,通过控制器搜索源 - 目的地对之间的多个候选路径和网络拓扑图; 将通过每个候选路径的链路的成本加起来,以通过控制器获取每个候选路径的链路成本之和; 并且通过控制器选择具有最小链路成本和的候选路径之一作为源 - 目的地对之间的分组发送路径。
    • 7. 发明申请
    • NETWORK COMMUNICATION SYSTEM AND NETWORK COMMUNICATION METHOD
    • 网络通信系统和网络通信方法
    • US20140119375A1
    • 2014-05-01
    • US13802141
    • 2013-03-13
    • Inventec (Pudong) Technology CorporationINVENTEC CORPORATION
    • Jenn-Huei TsengShih-Hao WuYi-Kuan WuTe-Yen Liu
    • H04L12/56
    • H04L45/7457H04L49/3009H04L49/70
    • A network communication system comprises a cloud network and at least one physical machine. The cloud network comprises at least one physical switch. Each the physical machine comprises a plurality of virtual machines and a virtual switch. Each of the virtual machines is connected to the at least one physical switch in the cloud network through the virtual switch. The virtual switch encapsulates a destination machine address of an egress frame sent by the virtual machines, attaches a destination switch address to the egress frame to be forwarded to the at least one physical switch, and receives and analyzes an ingress frame obtained from the at least one physical switch, so as to convert the destination switch address of the ingress frame to the destination machine address, for forwarding the ingress frame to one of the virtual machines.
    • 网络通信系统包括云网络和至少一个物理机器。 云网络包括至少一个物理交换机。 每个物理机器包括多个虚拟机和虚拟交换机。 每个虚拟机通过虚拟交换机连接到云网络中的至少一个物理交换机。 虚拟交换机封装由虚拟机发送的出口帧的目的地机器地址,将目的地交换机地址附加到出站帧,以转发到至少一个物理交换机,并接收并分析从至少一个 一个物理交换机,以将入口帧的目的地交换机地址转换为目的地机器地址,用于将入口帧转发到其中一个虚拟机。