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    • 1. 发明授权
    • Methods of determining communications protocol latency
    • 确定通信协议延迟的方法
    • US07937470B2
    • 2011-05-03
    • US09740804
    • 2000-12-21
    • Robert CurleyEli Patashnik
    • Robert CurleyEli Patashnik
    • G06F15/173
    • H04L43/06H04L41/12H04L41/5003H04L41/5009H04L41/507H04L43/0829H04L43/0852H04L43/0864
    • A remote network monitor for monitoring transaction-based protocols such as HTTP receives and analyzes protocol requests and associated responses, and derives therefrom a parameter associated with round-trip network latency. For example, TCP/IP acknowledgement packets can be used to deduce network latency. Such network latency and total latency parameters can be used to determine which portion of total latency can be attributable to the network and which portion is attributable to node processing time (e.g., server and/or client processing). A plurality of remotely located network monitors (and/or monitors co-located with servers and/or clients) can be used to derive and report on actual latency experienced throughout the network.
    • 用于监视基于事务的协议(例如HTTP)的远程网络监视器接收和分析协议请求和相关联的响应,并从其中导出与往返网络等待时间相关联的参数。 例如,可以使用TCP / IP确认数据包来推断网络延迟。 这样的网络延迟和总等待时间参数可以用于确定总延迟的哪个部分可以归因于网络,哪个部分归因于节点处理时间(例如,服务器和/或客户端处理)。 可以使用多个远程位置的网络监视器(和/或与服务器和/或客户机共址的监视器)来导出和报告遍历整个网络的实际延迟。
    • 3. 发明申请
    • Mobile networking system and method
    • 移动网络系统和方法
    • US20060123079A1
    • 2006-06-08
    • US11252995
    • 2005-10-19
    • Emil SturnioloJoseph SavareseErik OlsonEli Patashnik
    • Emil SturnioloJoseph SavareseErik OlsonEli Patashnik
    • G06F15/16
    • H04W80/045H04L67/28H04L67/2861H04L67/40H04L69/16H04L69/161H04L69/167H04L69/40H04W8/02H04W36/08H04W80/04H04W80/10H04W88/182
    • A seamless solution transparently addresses the characteristics of nomadic systems, and enables existing network applications to run reliably in mobile environments. A Mobility Management Server coupled to the mobile network maintains the state of each of any number of Mobile End Systems and handles the complex session management required to maintain persistent connections to the network and to other peer processes. If a Mobile End System becomes unreachable, suspends, or changes network address (e.g., due to roaming from one network interconnect to another), the Mobility Management Server maintains the connection to the associated peer task—allowing the Mobile End System to maintain a continuous connection even though it may temporarily lose contact with its network medium. An interface-based listener uses network point of attachment information supplied by a network interface to determine roaming conditions and to efficiently reestablish connection upon roaming. The Mobility Management Server can distribute lists to Mobile End Systems specifying how to contact it over disjoint networks. Architectures are provided for bridging between IPv4 and IPv6 Internet Protocols.
    • 无缝解决方案透明地解决游牧系统的特点,并使现有的网络应用在移动环境中可靠运行。 耦合到移动网络的移动管理服务器维护任何数量的移动终端系统中的每一个的状态,并且处理维持与网络和其他对等进程的持续连接所需的复杂会话管理。 如果移动终端系统变得无法访问,暂停或更改网络地址(例如,由于从一个网络互连漫游到另一个网络互连),则移动性管理服务器维护与相关联的对等任务的连接,从而允许移动终端系统维持连续 连接,即使它可能暂时失去与其网络媒体的接触。 基于接口的侦听器使用由网络接口​​提供的网络连接点信息来确定漫游条件,并在漫游时有效地重新建立连接。 移动管理服务器可以将列表分发到移动终端系统,指定如何通过不相交的网络与其联系。 提供架构,用于在IPv4和IPv6互联网协议之间进行桥接。