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    • 1. 发明申请
    • Network Operating System With Topology Autodiscovery
    • 网络操作系统拓扑自动发现
    • US20100247096A1
    • 2010-09-30
    • US12781379
    • 2010-05-17
    • Jeffrey Kenneth EmeryGuy Claude FortinMarkus MesserschmidtPaul Edward BeerRobert George Alexander CraigHock Gin LimYouxun Duan
    • Jeffrey Kenneth EmeryGuy Claude FortinMarkus MesserschmidtPaul Edward BeerRobert George Alexander CraigHock Gin LimYouxun Duan
    • H04B10/08
    • H04L61/20H04J14/0227H04J14/0228H04J14/0241H04J14/0267H04J14/0275H04J14/0278H04L29/12009H04L29/12207H04L41/12H04Q11/0062H04Q2011/0069H04Q2011/0079H04Q2011/0088
    • The network operating system includes an embedded platform for controlling operation of an agile optical network at the physical layer level. At the module embedded level, each module (card-pack) is provided with an embedded controller EC that monitors and control operation of the optical modules. At the next level, each shelf is provided with a shelf processor SP that monitors and control operation of the ECs over a backplane network. All optical modules are connected over an optical trace channel to send/receive trace messages that can then be used to determine network connectivity. At the next, link management level, a network services controller NSC controls the SPs in a negotiated span of control, over a link network. The control is address-based; each NSC receives ranges of addresses for the entities in its control, and distributes these addresses to the SPs, which in turn distribute addresses to the ECs in their control. One of the SPs operates as a router on the link network to relay signaling and control to all entities based on their address. Each NSC constructs, from queried information, a network topology fragment for the embedded elements under its control. A distributed topology system (DTS) shares this topology information with neighboring NSC's to build a complete network view, which can be used by all interested network applications.
    • 网络操作系统包括用于在物理层级控制敏捷光网络的操作的嵌入式平台。 在模块嵌入级别,每个模块(卡片组)都提供了一个嵌入式控制器EC,用于监视和控制光模块的操作。 在下一级,每个货架都设有货架处理器SP,其通过背板网络监视和控制EC的操作。 所有光学模块通过光学跟踪通道连接以发送/接收跟踪消息,然后可用于确定网络连接。 接下来,链路管理级别,网络服务控制器NSC通过链路网络在协商的控制范围内控制SP。 控制是基于地址的; 每个NSC接收其控制中的实体的地址范围,并将这些地址分配给SP,而SP又将地址分配给控制中的EC。 其中一个SP作为路由器在链路网络上运行,以基于其地址对所有实体进行信令和控制。 每个NSC从查询的信息中构建其控制下的嵌入元素的网络拓扑片段。 分布式拓扑系统(DTS)与相邻的NSC共享此拓扑信息,以构建完整的网络视图,可以由所有感兴趣的网络应用程序使用。
    • 2. 发明授权
    • Network operating system with topology autodiscovery
    • 具有拓扑自动发现功能的网络操作系统
    • US08165466B2
    • 2012-04-24
    • US12781379
    • 2010-05-17
    • Jeffrey Kenneth EmeryGuy Claude FortinMarkus MesserschmidtPaul Edward BeerRobert George Alexander CraigHock Gin LimYouxun Duan
    • Jeffrey Kenneth EmeryGuy Claude FortinMarkus MesserschmidtPaul Edward BeerRobert George Alexander CraigHock Gin LimYouxun Duan
    • H04B10/00
    • H04L61/20H04J14/0227H04J14/0228H04J14/0241H04J14/0267H04J14/0275H04J14/0278H04L29/12009H04L29/12207H04L41/12H04Q11/0062H04Q2011/0069H04Q2011/0079H04Q2011/0088
    • The network operating system includes an embedded platform for controlling operation of an agile optical network at the physical layer level. At the module embedded level, each module (card-pack) is provided with an embedded controller EC that monitors and control operation of the optical modules. At the next level, each shelf is provided with a shelf processor SP that monitors and control operation of the ECs over a backplane network. All optical modules are connected over an optical trace channel to send/receive trace messages that can then be used to determine network connectivity. At the next, link management level, a network services controller NSC controls the SPs in a negotiated span of control, over a link network. The control is address-based; each NSC receives ranges of addresses for the entities in its control, and distributes these addresses to the SPs, which in turn distribute addresses to the ECs in their control. One of the SPs operates as a router on the link network to relay signaling and control to all entities based on their address. Each NSC constructs, from queried information, a network topology fragment for the embedded elements under its control. A distributed topology system (DTS) shares this topology information with neighboring NSC's to build a complete network view, which can be used by all interested network applications.
    • 网络操作系统包括用于在物理层级控制敏捷光网络的操作的嵌入式平台。 在模块嵌入级别,每个模块(卡片组)都提供了一个嵌入式控制器EC,用于监视和控制光模块的操作。 在下一级,每个货架都设有货架处理器SP,其通过背板网络监视和控制EC的操作。 所有光学模块通过光学跟踪通道连接以发送/接收跟踪消息,然后可用于确定网络连接。 接下来,链路管理级别,网络服务控制器NSC通过链路网络在协商的控制范围内控制SP。 控制是基于地址的; 每个NSC接收其控制中的实体的地址范围,并将这些地址分配给SP,而SP又将地址分配给控制中的EC。 其中一个SP作为路由器在链路网络上运行,以基于其地址对所有实体进行信令和控制。 每个NSC从查询的信息中构建其控制下的嵌入元素的网络拓扑片段。 分布式拓扑系统(DTS)与相邻的NSC共享此拓扑信息,以构建完整的网络视图,可以由所有感兴趣的网络应用程序使用。
    • 3. 发明授权
    • Network operating system with topology autodiscovery
    • 具有拓扑自动发现功能的网络操作系统
    • US07747165B2
    • 2010-06-29
    • US10163939
    • 2002-06-06
    • Jeffrey Kenneth EmeryGuy Claude FortinMarkus MesserschmidtPaul Edward BeerRobert George Alexander CraigHock Gin LimYouxun Duan
    • Jeffrey Kenneth EmeryGuy Claude FortinMarkus MesserschmidtPaul Edward BeerRobert George Alexander CraigHock Gin LimYouxun Duan
    • H04B10/00
    • H04L61/20H04J14/0227H04J14/0228H04J14/0241H04J14/0267H04J14/0275H04J14/0278H04L29/12009H04L29/12207H04L41/12H04Q11/0062H04Q2011/0069H04Q2011/0079H04Q2011/0088
    • The network operating system includes an embedded platform for controlling operation of an agile optical network at the physical layer level. At the module embedded level, each module (card-pack) is provided with an embedded controller EC that monitors and control operation of the optical modules. At the next level, each shelf is provided with a shelf processor SP that monitors and control operation of the ECs over a backplane network. All optical modules are connected over an optical trace channel to send/receive trace messages that can then be used to determine network connectivity. At the next, link management level, a network services controller NSC controls the SPs in a negotiated span of control, over a link network. The control is address-based; each NSC receives ranges of addresses for the entities in its control, and distributes these addresses to the SPs, which in turn distribute addresses to the ECs in their control. One of the SPs operates as a router on the link network to relay signaling and control to all entities based on their address. Each NSC constructs, from queried information, a network topology fragment for the embedded elements under its control. A distributed topology system (DTS) shares this topology information with neighboring NSC's to build a complete network view, which can be used by all interested network applications.
    • 网络操作系统包括用于在物理层级控制敏捷光网络的操作的嵌入式平台。 在模块嵌入级别,每个模块(卡片组)都提供了一个嵌入式控制器EC,用于监视和控制光模块的操作。 在下一级,每个货架都设有货架处理器SP,其通过背板网络监视和控制EC的操作。 所有光学模块通过光学跟踪通道连接以发送/接收跟踪消息,然后可用于确定网络连接。 接下来,链路管理级别,网络服务控制器NSC通过链路网络在协商的控制范围内控制SP。 控制是基于地址的; 每个NSC接收其控制中的实体的地址范围,并将这些地址分配给SP,而SP又将地址分配给控制中的EC。 其中一个SP作为路由器在链路网络上运行,以基于其地址对所有实体进行信令和控制。 每个NSC从查询的信息中构建其控制下的嵌入元素的网络拓扑片段。 分布式拓扑系统(DTS)与相邻的NSC共享此拓扑信息,以构建完整的网络视图,可以由所有感兴趣的网络应用程序使用。