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    • 21. 发明申请
    • Techniques for replacing point to point protocol with dynamic host configuration protocol
    • 用动态主机配置协议替代点对点协议的技术
    • US20070203999A1
    • 2007-08-30
    • US11362702
    • 2006-02-25
    • William TownsleyVincent MammolitiRalph DromsWojciech DecRichard Pruss
    • William TownsleyVincent MammolitiRalph DromsWojciech DecRichard Pruss
    • G06F15/16G06F15/177
    • H04L29/1282H04L61/2015H04L61/6013H04L63/08H04L63/0892
    • Techniques for providing remote access to a service provider network include exchanging multiple Dynamic Host Configuration Protocol (DHCP) formatted messages instead of any Point to Point Protocol (PPP) message to provide all PPP functions for accessing a service provider network from a customer node. The service provider network is on provider premises and the customer node is on customer premises different from the provider premises. The DHCP format is used to exchange authentication messages, user profile data on Authentication, Authorization and Accounting (AAA) servers, or session keep-alive echo messages, alone or in some combination. When all are message types are combined, these techniques provide a remote access server (RAS) with the capability to perform all functions presently provided by PPP processes. In some combinations, these techniques allow a modified DHCP server to replace a legacy AAA server.
    • 用于提供对服务提供商网络的远程访问的技术包括交换多个动态主机配置协议(DHCP)格式的消息而不是任何点对点协议(PPP)消息,以提供用于从客户节点访问服务提供商网络的所有PPP功能。 服务提供商网络在提供商场所,并且客户节点在与提供商场所不同的客户驻地上。 DHCP格式用于单独或以某种组合交换认证消息,认证,授权和计费(AAA)服务器上的用户配置文件数据或会话保持活动的回显消息。 当所有消息类型都被组合时,这些技术提供具有执行PPP进程目前提供的所有功能的能力的远程访问服务器(RAS)。 在某些组合中,这些技术允许修改的DHCP服务器来替代传统的AAA服务器。
    • 23. 发明申请
    • Locating and provisioning devices in a network
    • 在网络中定位和配置设备
    • US20050253718A1
    • 2005-11-17
    • US11119169
    • 2005-04-29
    • Ralph DromsRoland SavilleGary Vogel
    • Ralph DromsRoland SavilleGary Vogel
    • G01S13/82G08B13/14
    • G01S13/825G06Q10/087H04L61/2015H04L67/18H04W64/00
    • Methods and devices are provided for locating, identifying and provisioning devices in a network. According to some implementations of the invention, a combination of EPC code information and existing networking standards form the basis of identifying and provisioning methods. For example, location information included in a DHCPDISCOVER request can be used to determine appropriate configurations for networked devices. In some such implementations, the location information is read from an RFID tag near the networked device and is inserted in the DHCPDISCOVER request. The location information may include any type of absolute or relative coordinate, positioning, cartographic or similar information and/or information from which such information may be derived.
    • 提供了用于在网络中定位,识别和供应设备的方法和设备。 根据本发明的一些实现方式,EPC代码信息和现有网络标准的组合构成了识别和提供方法的基础。 例如,DHCPDISCOVER请求中包含的位置信息可用于确定网络设备的适当配置。 在一些这样的实施方式中,从联网设备附近的RFID标签读取位置信息,并将其插入到DHCPDISCOVER请求中。 位置信息可以包括任何类型的绝对或相对坐标,定位,制图或类似的信息和/或可从中导出这些信息的信息。
    • 25. 发明授权
    • Automatically identifying an edge-facing router
    • 自动识别边缘路由器
    • US08576857B2
    • 2013-11-05
    • US12692367
    • 2010-01-22
    • Hemant SinghWilliam Beebee, Jr.Ralph DromsOle Troan
    • Hemant SinghWilliam Beebee, Jr.Ralph DromsOle Troan
    • H04L12/56
    • H04L41/0803H04L29/12226H04L41/0816H04L61/2015H04L61/6059
    • Techniques for automatically identifying an edge-facing router in a network are provided. In one technique, data is obtained at a first router of a subscriber network. The data may be included in a DHCP message or a NDP RA message. The first router determines, based on the data, whether the first router is a service provider (SP)-facing router, which is a router that is coupled to a SP router and no other router in the subscriber network is logically between the SP-facing router and the SP router. If it is determined that the first router is an SP-facing router, then the first router stores identification data that identifies the first router as an SP-facing router. Otherwise, the first router stores identification data that identifies the first router as a non-SP-facing router.
    • 提供了一种用于自动识别网络中边缘路由器的技术。 在一种技术中,在用户网络的第一路由器处获得数据。 数据可以包括在DHCP消息或NDP RA消息中。 第一路由器基于数据确定第一路由器是否是服务提供商(SP)路由器,其是耦合到SP路由器的路由器,并且订户网络中的其他路由器在逻辑上在SP- 面向路由器和SP路由器。 如果确定第一路由器是面向SP的路由器,则第一路由器将标识第一路由器的标识数据存储为面向SP的路由器。 否则,第一路由器将标识第一路由器的识别数据存储为非面向SP的路由器。