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    • 1. 发明申请
    • AUTONOMIC LOCATOR/IDENTIFIER SEPARATION PROTOCOL FOR SECURE HYBRID CLOUD EXTENSION
    • 自动定位器/识别器分离协议用于安全混合云扩展
    • US20160164832A1
    • 2016-06-09
    • US14563688
    • 2014-12-08
    • CISCO TECHNOLOGY, INC.
    • Patrice BellagambaMichael H. BehringerSantiago Vazquez Freitas
    • H04L29/06H04L29/08
    • H04L63/0281H04L45/04H04L45/64H04L61/103H04L61/2084H04L67/10H04L67/141H04L67/2819
    • A method is provided in one example embodiment and includes configuring a local network element as an autonomic registrar for a designated network domain; establishing an autonomic control plane (“ACP”) between the local network element and one or more remote network elements identified by local network element as a remote neighbor; designating a locally-defined subnet at the local network element to be extended to each of the one or more remote network elements; and executing an ACP command at the local network element, wherein the executing triggers a message to each of the one or more remote network elements, the message including information regarding the designated local subnet. The information included in the message is used by each of the remote network elements to auto-resolve its Locator/Identifier Separation Protocol (“LISP”) configuration, enabling the designated local subnet to be extended to each of the one or more remote network elements.
    • 在一个示例实施例中提供了一种方法,并且包括将本地网络元件配置为用于指定网络域的自主注册器; 在本地网络元件和由本地网元识别为远程邻居的一个或多个远程网络元件之间建立自主控制平面(“ACP”); 在所述本地网络元件处指定要扩展到所述一个或多个远程网络元件中的每一个的本地定义的子网; 以及在所述本地网络单元处执行ACP命令,其中所述执行向所述一个或多个远程网络元件中的每一个触发消息,所述消息包括关于所指定的本地子网的信息。 消息中包含的信息被每个远程网络元件使用以自动解析其定位器/标识符分离协议(“LISP”)配置,使指定的本地子网能够扩展到一个或多个远程网络元件 。
    • 4. 发明授权
    • LISP stretched subnet mode for data center migrations
    • LISP延伸子网模式用于数据中心迁移
    • US09276871B1
    • 2016-03-01
    • US14220922
    • 2014-03-20
    • CISCO TECHNOLOGY, INC.
    • Santiago Vazquez FreitasPatrice Bellagamba
    • G06F15/167H04L12/911H04L29/12
    • H04L47/70H04L61/103H04L61/2007H04L61/2084H04L67/2842
    • The present disclosure describes methods and systems for enabling a migration of network elements from a first location to a second location remote from the first location without changing the Internet Protocol (IP) addresses, subnet mask, and/or default gateway of the network elements. The first location has a first Locator/Identifier Separation Protocol (LISP) router configured on a stick and the second location having a second LISP router configured on a stick. Both the first LISP router and the second LISP router are on the same subnet. Effectively, LISP provides a Layer 3 extension stretching a subnet across the first location and the second location (Stretched Subnet Mode (SSM)). By implementing LISP routers in this manner, system engineers can migrate network elements easily between two locations.
    • 本公开描述了用于使网络元件从第一位置迁移到远离第一位置的第二位置的方法和系统,而不改变网络元件的因特网协议(IP)地址,子网掩码和/或默认网关。 第一个位置具有在棒上配置的第一个定位器/标识符分离协议(LISP)路由器,而第二个位置具有在棒上配置的第二个LISP路由器。 第一个LISP路由器和第二个LISP路由器都在同一个子网上。 有效地,LISP提供了在第一位置和第二位置(拉伸子网模式(SSM))上延伸子网的第3层扩展。 通过以这种方式实现LISP路由器,系统工程师可以在两个位置之间轻松迁移网元。
    • 7. 发明授权
    • Autonomic locator/identifier separation protocol for secure hybrid cloud extension
    • 用于安全混合云扩展的自动定位器/标识符分离协议
    • US09560018B2
    • 2017-01-31
    • US14563688
    • 2014-12-08
    • CISCO TECHNOLOGY, INC.
    • Patrice BellagambaMichael H. BehringerSantiago Vazquez Freitas
    • H04L29/06H04L29/08H04L29/12H04L12/715
    • H04L63/0281H04L45/04H04L45/64H04L61/103H04L61/2084H04L67/10H04L67/141H04L67/2819
    • A method is provided in one example embodiment and includes configuring a local network element as an autonomic registrar for a designated network domain; establishing an autonomic control plane (“ACP”) between the local network element and one or more remote network elements identified by local network element as a remote neighbor; designating a locally-defined subnet at the local network element to be extended to each of the one or more remote network elements; and executing an ACP command at the local network element, wherein the executing triggers a message to each of the one or more remote network elements, the message including information regarding the designated local subnet. The information included in the message is used by each of the remote network elements to auto-resolve its Locator/Identifier Separation Protocol (“LISP”) configuration, enabling the designated local subnet to be extended to each of the one or more remote network elements.
    • 在一个示例实施例中提供了一种方法,并且包括将本地网络元件配置为用于指定网络域的自主注册器; 在本地网络元件和由本地网元识别为远程邻居的一个或多个远程网络元件之间建立自主控制平面(“ACP”); 在所述本地网络元件处指定要扩展到所述一个或多个远程网络元件中的每一个的本地定义的子网; 以及在所述本地网络单元处执行ACP命令,其中所述执行向所述一个或多个远程网络元件中的每一个触发消息,所述消息包括关于所指定的本地子网的信息。 消息中包含的信息被每个远程网络元件使用以自动解析其定位器/标识符分离协议(“LISP”)配置,使指定的本地子网能够扩展到一个或多个远程网络元件 。
    • 9. 发明申请
    • LISP STRETCHED SUBNET MODE FOR DATA CENTER MIGRATIONS
    • 用于数据中心移动的LISP扩展子网模式
    • US20160173405A1
    • 2016-06-16
    • US15048396
    • 2016-02-19
    • CISCO TECHNOLOGY, INC.
    • Santiago Vazquez FreitasPatrice Bellagamba
    • H04L12/911H04L29/12H04L29/08
    • H04L47/70H04L61/103H04L61/2007H04L61/2084H04L67/2842
    • The present disclosure describes methods and systems for enabling a migration of network elements from a first location to a second location remote from the first location without changing the Internet Protocol (IP) addresses, subnet mask, and/or default gateway of the network elements. The first location has a first Locator/Identifier Separation Protocol (LISP) router configured on a stick and the second location having a second LISP router configured on a stick. Both the first LISP router and the second LISP router are on the same subnet. Effectively, LISP provides a Layer 3 extension stretching a subnet across the first location and the second location (Stretched Subnet Mode (SSM)). By implementing LISP routers in this manner, system engineers can migrate network elements easily between two locations.
    • 本公开描述了用于使网络元件从第一位置迁移到远离第一位置的第二位置的方法和系统,而不改变网络元件的因特网协议(IP)地址,子网掩码和/或默认网关。 第一个位置具有在棒上配置的第一个定位器/标识符分离协议(LISP)路由器,而第二个位置具有在棒上配置的第二个LISP路由器。 第一个LISP路由器和第二个LISP路由器都在同一个子网上。 有效地,LISP提供了在第一位置和第二位置(拉伸子网模式(SSM))上延伸子网的第3层扩展。 通过以这种方式实现LISP路由器,系统工程师可以在两个位置之间轻松迁移网元。