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    • 2. 发明授权
    • Techniques for ensuring synchronized processing at remote fiber channel and fiber connectivity networks
    • 确保远程光纤通道和光纤连接网络同步处理的技术
    • US07630405B1
    • 2009-12-08
    • US11441484
    • 2006-05-27
    • Fang GaoGongyuan YaoRavi Singhal
    • Fang GaoGongyuan YaoRavi Singhal
    • H04J3/00
    • H04J3/1617H04J3/1658H04J2203/0066H04J2203/0082
    • Techniques described use Generic Framing Procedure (GFP) to transport data across an optical transport network between near and far Fiber Channel (FC) or Fiber Connectivity (FICON) local area optical networks. Each FC/FICON edge node (FCE) on an edge of the optical transport network has multiple modes for processing FC/FICON frames transported across the optical transport network. The techniques include receiving, at a near FCE from a far FCE, a GFP control plane message that includes a mode field that holds data that indicates a far mode, wherein the far mode is used at the far FCE. It is determined whether a near mode used by the near FCE matches the far mode based on the mode field. If it is determined that they do not match, then an alert is caused. These techniques allow software to utilize existing GFP chips in FCE that use optional processing, such as distance extension.
    • 所描述的技术使用通用成帧过程(GFP)在近端和远端光纤通道(FC)或光纤连接(FICON)局域光网络之间的光传输网络上传输数据。 光传输网络边缘上的每个FC / FICON边缘节点(FCE)具有多种处理通过光传输网络传输的FC / FICON帧的模式。 这些技术包括在远FCE的近FCE处接收GFP控制平面消息,其包括保存指示远模式的数据的模式字段,其中在远FCE处使用远模式。 确定近FCE使用的近似模式是否与基于模式字段的远模式匹配。 如果确定它们不匹配,则会引起警报。 这些技术允许软件利用FCE中现有的GFP芯片,使用可选的处理,如距离扩展。
    • 3. 发明授权
    • Techniques for ensuring synchronized processing at remote fibre channel and fibre connectivity networks
    • 确保远程光纤通道和光纤连接网络同步处理的技术
    • US08155147B2
    • 2012-04-10
    • US12621985
    • 2009-11-19
    • Fang GaoGongyuan YaoRavi Singhal
    • Fang GaoGongyuan YaoRavi Singhal
    • H04J3/24
    • H04J3/1617H04J3/1658H04J2203/0066H04J2203/0082
    • Techniques described use Generic Framing Procedure (GFP) to transport data across an optical transport network between near and far Fiber Channel (FC) or Fiber Connectivity (FICON) local area optical networks. Each FC/FICON edge node (FCE) on an edge of the optical transport network has multiple modes for processing FC/FICON frames transported across the optical transport network. The techniques include receiving, at a near FCE from a far FCE, a GFP control plane message that includes a mode field that holds data that indicates a far mode, wherein the far mode is used at the far FCE. It is determined whether a near mode used by the near FCE matches the far mode based on the mode field. If it is determined that they do not match, then an alert is caused. These techniques allow software to utilize existing GFP chips in FCE that use optional processing, such as distance extension.
    • 所描述的技术使用通用成帧过程(GFP)在近端和远端光纤通道(FC)或光纤连接(FICON)局域光网络之间的光传输网络上传输数据。 光传输网络边缘上的每个FC / FICON边缘节点(FCE)具有多种处理通过光传输网络传输的FC / FICON帧的模式。 这些技术包括在远FCE的近FCE处接收GFP控制平面消息,其包括保存指示远模式的数据的模式字段,其中在远FCE处使用远模式。 确定近FCE使用的近似模式是否与基于模式字段的远模式匹配。 如果确定它们不匹配,则会引起警报。 这些技术允许软件利用FCE中现有的GFP芯片,使用可选的处理,如距离扩展。
    • 4. 发明申请
    • TECHNIQUES FOR ENSURING SYNCHRONIZED PROCESSING AT REMOTE FIBRE CHANNEL AND FIBRE CONNECTIVITY NETWORKS
    • 用于在远程光纤通道和光纤连接网络中实现同步处理的技术
    • US20100067909A1
    • 2010-03-18
    • US12621985
    • 2009-11-19
    • Fang GaoGongyuan YaoRavi Singhal
    • Fang GaoGongyuan YaoRavi Singhal
    • H04J3/06H04J14/00
    • H04J3/1617H04J3/1658H04J2203/0066H04J2203/0082
    • Techniques described use Generic Framing Procedure (GFP) to transport data across an optical transport network between near and far Fibre Channel (FC) or Fibre Connectivity (FICON) local area optical networks. Each FC/FICON edge node (FCE) on an edge of the optical transport network has multiple modes for processing FC/FICON frames transported across the optical transport network. The techniques include receiving, at a near FCE from a far FCE, a GFP control plane message that includes a mode field that holds data that indicates a far mode, wherein the far mode is used at the far FCE. It is determined whether a near mode used by the near FCE matches the far mode based on the mode field. If it is determined that they do not match, then an alert is caused. These techniques allow software to utilize existing GFP chips in FCE that use optional processing, such as distance extension.
    • 所描述的技术使用通用成帧过程(GFP)在近端和远端光纤通道(FC)或光纤连接(FICON)局域光网络之间的光传输网络上传输数据。 光传输网络边缘上的每个FC / FICON边缘节点(FCE)具有多种处理通过光传输网络传输的FC / FICON帧的模式。 这些技术包括在远FCE的近FCE处接收GFP控制平面消息,其包括保存指示远模式的数据的模式字段,其中在远FCE处使用远模式。 确定近FCE使用的近似模式是否与基于模式字段的远模式匹配。 如果确定它们不匹配,则会引起警报。 这些技术允许软件利用FCE中现有的GFP芯片,使用可选的处理,如距离扩展。