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    • 31. 发明授权
    • Automatic self-addressing method for wired network nodes
    • 用于有线网络节点的自动寻址方法
    • US08296488B2
    • 2012-10-23
    • US12768270
    • 2010-04-27
    • Richard L. Westrick, Jr.Dalibor Zulim
    • Richard L. Westrick, Jr.Dalibor Zulim
    • G06F13/00G06F3/00
    • H04L61/2038H04L29/12254H04L29/1232H04L61/2092
    • A method and system for addressing nodes in a multi-drop wired network are disclosed. In an embodiment nodes communicate via a two-way communication bus. Upon receipt of an address command, a first node assigns itself a first address, closes a switch to activate an output port of the first node to enable a second node to receive communications from the first node, and sends a second address onto the two-way communication bus. The second address is received by all previously addressed nodes, including a controller if used, as well as the second node, which is as yet unaddressed. Upon receipt of the second address, the second node repeats the process. If a node does not receive an acknowledgement that a subsequent node has addressed itself, that node deactivates its output port and terminates the network.
    • 公开了一种用于寻址多点有线网络中的节点的方法和系统。 在一个实施例中,节点通过双向通信总线进行通信。 在接收到地址命令时,第一节点分配自己的第一地址,关闭交换机以激活第一节点的输出端口,以使得第二节点能够从第一节点接收通信,并将第二地址发送到第二节点, 双向通信总线。 所有先前寻址的节点都接收第二个地址,包括一个控制器(如果使用的话)以及尚未解决的第二个节点。 在接收到第二地址时,第二节点重复该过程。 如果节点没有收到后续节点已经寻址自己的确认,则该节点取消激活其输出端口并终止网络。
    • 35. 发明申请
    • Automatic Address Range Detection for IP Networks
    • IP网络的自动地址范围检测
    • US20120163196A1
    • 2012-06-28
    • US13390037
    • 2010-08-03
    • Bernhard JansenAndreas KindMarc P. Stoecklin
    • Bernhard JansenAndreas KindMarc P. Stoecklin
    • H04L12/44H04L12/26
    • H04L61/6068H04L29/1232H04L29/12933H04L61/2092H04L67/34
    • Mechanisms are provided for automatic address range detection for an IP network. Flow data is obtained comprising one of the source and destination IP addresses for the flow and one of (a) the other of the source and destination IP addresses and (b) direction data indicative of the flow direction across the network boundary. A tree data structure is generated representing the IP addresses in the flow data. IP addresses with initial portions in common are represented in the tree with at least one node in common. Weights are assigned to nodes in the tree in dependence on occurrences of the represented IP addresses in at least a subset of the flow data. The IP address range of the network is then detected by identifying, in dependence on the assigned weights, the node associated with the last initial address portion common to all IP addresses in the network. A device is automatically configured with the IP address range to permit distinction between IP addresses inside and outside the network in operation of the device, e.g. for filtering or traffic classification.
    • 为IP网络的自动地址范围检测提供了机制。 获得流数据,其包括用于流的源和目的地IP地址之一,(a)源和目的地IP地址中的另一个以及(b)指示跨越网络边界的流向的方向数据。 生成表示流数据中的IP地址的树数据结构。 具有公共初始部分的IP地址在树中被表示为具有至少一个共同的节点。 根据在流数据的至少一个子集中所表示的IP地址的出现,权重被分配给树中的节点。 然后,通过根据所分配的权重,通过与网络中所有IP地址共同的最后一个初始地址部分相关联的节点来识别网络的IP地址范围。 自动配置设备的IP地址范围,以允许在设备操作中区分网络内部和外部的IP地址。 用于过滤或流量分类。
    • 36. 发明授权
    • Apparatus and method for supporting broadcast/multicast IP packets through a simplified sockets interface
    • 通过简化的插座接口支持广播/组播IP分组的装置和方法
    • US08180899B2
    • 2012-05-15
    • US11835001
    • 2007-08-07
    • Marcello LioyUppinder Babbar
    • Marcello LioyUppinder Babbar
    • G06F15/16G06F15/173
    • H04L29/1232H04L61/2092H04L69/14H04L69/16H04L69/162
    • A method for configuring an IP address to receive broadcast or multicast data flow which modifies the bind( ) Application Programming Interface (API) to survey available local interfaces to determine their ability to be configured to receive data from a particular IP address, configure a interface to receive the IP address if it is so configurable, bind the IP address to that interface. The modified bind*( ) API may interact with one or more interfaces to see if each interface is capable of being configured to the IP address. Alternatively, the modified bind*( ) API determines the configurability of interfaces by consulting the access control list. Policy based routing rules may be implemented so that the modified bind*( ) operation configures the highest priority interface based upon policy parameters.
    • 一种用于配置IP地址以接收广播或多播数据流的方法,其修改bind()应用编程接口(API)以调查可用的本地接口以确定其被配置为从特定IP地址接收数据的能力,配置接口 要接收IP地址,如果是可配置的,请将该IP地址绑定到该接口。 修改的bind *()API可以与一个或多个接口交互,以查看每个接口是否能够被配置为IP地址。 或者,修改的bind *()API通过查询访问控制列表来确定接口的可配置性。 可以实现基于策略的路由规则,使得修改的bind *()操作基于策略参数来配置最高优先级的接口。
    • 40. 发明授权
    • Network movement detection method in mobile node of DSMIP6 environment
    • DSMIP6环境移动节点网络运动检测方法
    • US08045509B2
    • 2011-10-25
    • US12518234
    • 2007-10-31
    • Joo Chul LeeHyoung Jun Kim
    • Joo Chul LeeHyoung Jun Kim
    • H04L12/28
    • H04W80/045H04L29/12216H04L29/1232H04L61/2007H04L61/2092H04W48/08
    • There is provided a movement detection method of a mobile node in a DSMIP6 environment. The movement detection method includes performing neighbor unreachability detection in a network to which a mobile node moves, confirming network movement detection and simultaneously performing IPv4 address allocation when the neighbor unreachability detection fails, performing router discovery at the same time as the IPv4 address allocation, recognizing the movement detection into the IPv4 network when the IPv4 address allocation succeeds, and recognizing the movement detection into the IPv6 network when the router discovery and the IPv6 router discovery succeed. Therefore, the movement detection method can be useful to continuously perform operations as defined in a DSMIP6 specification so as to confirm whether the network to which the mobile node moves is an IPv6 network or an IPv4 network and detect movement to the confirmed network, and to perform a binding update in time.
    • 提供了DSMIP6环境中的移动节点的移动检测方法。 移动检测方法包括在移动节点移动的网络中执行邻居不可达性检测,确认网络移动检测,并且当邻居不可达性检测失败时同时执行IPv4地址分配,与IPv4地址分配同时执行路由器发现,识别 当IPv4地址分配成功时,运动检测到IPv4网络,当路由器发现和IPv6路由器发现成功时,识别到IPv6网络中的移动检测。 因此,运动检测方法对于连续执行如DSMIP6规范中定义的操作是有用的,以便确认移动节点所移动的网络是IPv6网络还是IPv4网络,并检测到已确认网络的移动,以及 及时执行绑定更新。