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    • 2. 发明申请
    • FCIP COMMUNICATIONS WITH LOAD SHARING AND FAILOVER
    • FCIP通信与负载共享和失败
    • US20110225303A1
    • 2011-09-15
    • US12880495
    • 2010-09-13
    • Robert Grant Engebretson
    • Robert Grant Engebretson
    • G06F15/16
    • H04L47/193H04L47/125H04L47/2408H04L67/1097H04L69/16H04L69/169
    • An IP gateway device establishes distinct TCP sessions within a single FCIP tunnel, each TCP session being designated for a different priority of service (e.g., high, medium, low), plus a control stream. Each TCP session has its own TCP stack and its own settings for VLAN Tagging (IEEE 802.1Q), quality of service (IEEE 802.1P) and Differentiated Services Code Point (DSCP). By distributing data streams assigned to different priorities of service into different TCP sessions within the FCIP tunnel, an IP gateway device can preserve the distinctions between the data stream priorities while the data traffic is within the IP network. By further distributing the data streams between different circuits and trunks by use of multiple circuits, failover and load balancing can occur within the FCIP tunnels.
    • IP网关设备在单个FCIP隧道内建立不同的TCP会话,每个TCP会话被指定用于不同的服务优先级(例如,高,中,低)加上控制流。 每个TCP会话都有自己的TCP堆栈和自己的VLAN Tagging(IEEE 802.1Q),服务质量(IEEE 802.1P)和差分服务代码点(DSCP)的设置。 通过将分配给不同服务优先级的数据流分配到FCIP隧道内的不同TCP会话中,IP网关设备可以保持数据流优先级之间的区别,同时数据流量在IP网络内。 通过使用多个电路进一步分配不同电路和中继线之间的数据流,故障转移和负载平衡可能发生在FCIP隧道内。
    • 3. 发明授权
    • FCIP communications with load sharing and failover
    • FCIP通信与负载共享和故障转移
    • US08745243B2
    • 2014-06-03
    • US12880495
    • 2010-09-13
    • Robert Grant Engebretson
    • Robert Grant Engebretson
    • G06F15/16H04L12/56H04L29/08H04L29/06
    • H04L47/193H04L47/125H04L47/2408H04L67/1097H04L69/16H04L69/169
    • An IP gateway device establishes distinct TCP sessions within a single FCIP tunnel, each TCP session being designated for a different priority of service (e.g., high, medium, low), plus a control stream. Each TCP session has its own TCP stack and its own settings for VLAN Tagging (IEEE 802.1Q), quality of service (IEEE 802.1P) and Differentiated Services Code Point (DSCP). By distributing data streams assigned to different priorities of service into different TCP sessions within the FCIP tunnel, an IP gateway device can preserve the distinctions between the data stream priorities while the data traffic is within the IP network. By further distributing the data streams between different circuits and trunks by use of multiple circuits, failover and load balancing can occur within the FCIP tunnels.
    • IP网关设备在单个FCIP隧道内建立不同的TCP会话,每个TCP会话被指定用于不同的服务优先级(例如,高,中,低)加上控制流。 每个TCP会话都有自己的TCP堆栈和自己的VLAN Tagging(IEEE 802.1Q),服务质量(IEEE 802.1P)和差分服务代码点(DSCP)的设置。 通过将分配给不同服务优先级的数据流分配到FCIP隧道内的不同TCP会话中,IP网关设备可以保持数据流优先级之间的区别,同时数据流量在IP网络内。 通过使用多个电路进一步分配不同电路和中继线之间的数据流,故障转移和负载平衡可能发生在FCIP隧道内。