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    • 1. 发明授权
    • WAP analyzer
    • WAP分析仪
    • US07023827B2
    • 2006-04-04
    • US09949784
    • 2001-09-12
    • Akio IshikawaOsamu MaeshimaAkira IdoueToshihiko Kato
    • Akio IshikawaOsamu MaeshimaAkira IdoueToshihiko Kato
    • H04Q7/28
    • H04L29/06H04L43/06H04L43/18H04L67/04H04L69/03H04L69/329
    • A WAP (Wireless Application Protocol) analyzer located on a transmission line between communication apparatuses using WAP. A WAP packet includes at least one WTP-PDU (Wireless Transaction Protocol—Protocol Data Unit). The WAP analyzer comprising, database (16) for storing state-transition specification data that define a state-transition with a cause-and-effect relationship between WTP-PDUs, states of a WTP layer, primitives between the WTP layer and WSP (Wireless Session Protocol) layer, and states of the WSP layer, based on WAP specification, means (11) for extracting the WTP-PDUs from the WAP packets, and means (13) for estimating the state-transition of the WTP layer and the WSP layer, to the apparatus that received one of the WTP-PDUs and subsequently sent other of the WTP-PDUs, for each pair of a sender and a receiver.
    • 位于使用WAP的通信设备之间的传输线上的WAP(无线应用协议)分析器。 WAP分组包括至少一个WTP-PDU(无线事务协议 - 协议数据单元)。 WAP分析器包括:数据库(16),用于存储定义具有WTP-PDU之间的因果关系的状态转换的状态转换规范数据,WTP层的状态,WTP层和WSP之间的原语(无线 会话协议)层,并且基于WAP规范的WSP层的状态是用于从WAP分组中提取WTP-PDU的装置(11),以及用于估计WTP层和WSP的状态转换的装置(13) 层,连接到接收到一个WTP-PDU的设备,并随后发送其他的WTP-PDU,对于每一对发送者和接收者。
    • 5. 发明申请
    • NETWORK OPERATIONS MANAGEMENT METHOD AND APPARATUS
    • 网络运营管理方法与设备
    • US20100017517A1
    • 2010-01-21
    • US12502563
    • 2009-07-14
    • Daisuke AraiKiyohito YoshiharaAkira Idoue
    • Daisuke AraiKiyohito YoshiharaAkira Idoue
    • G06F15/173G06F9/455
    • G06F9/5077Y02D10/22Y02D10/36
    • The present invention provides a network operations management method and apparatus which realizes efficient power-saving by enabling virtual servers to move between physical servers beyond network segments. A reallocation design unit 13 designs reallocation of virtual servers to physical servers so that necessary resource amounts are assigned to all virtual servers. When virtual servers VS need to move between physical servers PS beyond network segments NS for the designed reallocation, a grouping unit 14 changes a network segment NS to which physical servers PS are connected by changing the configuration of a router and switches. A reallocation unit 15 realizes efficient power-saving by reallocating the virtual servers to the physical servers based on the design made by the reallocation design unit 13.
    • 本发明提供了一种网络操作管理方法和装置,其通过使虚拟服务器在网段之外的物理服务器之间移动来实现高效的省电。 重新分配设计单元13设计将虚拟服务器重新分配给物理服务器,从而将所需的资源量分配给所有虚拟服务器。 当虚拟服务器VS需要在超出网段NS的物理服务器PS之间移动以用于设计的重新分配时,分组单元14通过改变路由器和交换机的配置来改变连接到物理服务器PS的网段NS。 重新分配单元15基于由重新分配设计单元13进行的设计,将虚拟服务器重新分配给物理服务器来实现高效省电。
    • 7. 发明授权
    • Communication network system, network switch and bandwidth control, for site-to-site communications
    • 通信网络系统,网络交换机和带宽控制,用于站点到站点通信
    • US08718092B2
    • 2014-05-06
    • US13035416
    • 2011-02-25
    • Kenji HoriWataru UchikawaMasaya FujiwaraYasunobu OnoRiichiro AsaokaAkira Idoue
    • Kenji HoriWataru UchikawaMasaya FujiwaraYasunobu OnoRiichiro AsaokaAkira Idoue
    • H04J3/16
    • H04L12/4641H04L29/04H04L45/24H04L47/20H04L47/29H04L69/14
    • A communication network system is disclosed in which local-branch-site-line network switches accommodating local-branch-site lines, and at least one data-center-site-line network switch accommodating at least one data-center-site line, are interconnected via a carrier network. This system include: a first bandwidth controller, disposed at each local-branch-site-line network switch, configured to limit a bandwidth of each of inbound packets and/or outbound packets to a pre-selected bandwidth α, wherein the inbound packets flow from the instant local-branch-site-line network switch or other local-branch-site-line network switches, and the outbound packets flow to the instant local-branch-site-line network switch or other local-branch-site-line network switches; and a second bandwidth controller, disposed at each local-branch-site-line network switch, configured to limit a bandwidth of each of inbound packets and/or outbound packets to a pre-selected bandwidth β broader than the bandwidth α, wherein the inbound packets flow from the data-center-site-line network switch, and the outbound packets flow to the data-center-site-line network switch.
    • 公开了一种通信网络系统,其中容纳本地分支站点线路的本地分支站点线路网络和容纳至少一个数据中心站点线路的至少一个数据中心站点线路网络交换机是 通过运营商网络互连。 该系统包括:配置在每个本地分支站点线路网络交换机上的第一带宽控制器,用于将每个入站分组和/或出站分组的带宽限制为预选带宽α,其中入站分组流 从即时本地分支站点线路网络交换机或其他本地分支站点线路网络交换机,出站分组流到即时本地分支站点线路网络交换机或其他本地分支站点线路 网络交换机; 以及设置在每个本地分支站点线路网络交换机处的第二带宽控制器,被配置为将每个入站分组和/或出站分组的带宽限制为预先选择的带宽&bgr; 宽带宽度α,其中入站分组从数据中心站点线路交换机流出,并且出站分组流向数据中心站点线路网络交换机。
    • 9. 发明授权
    • Network configuration restoration method and system
    • 网络配置恢复方法和系统
    • US07870237B2
    • 2011-01-11
    • US12167499
    • 2008-07-03
    • Daisuke AraiKiyohito YoshiharaAkira IdoueHiroki Horiuchi
    • Daisuke AraiKiyohito YoshiharaAkira IdoueHiroki Horiuchi
    • G06F15/16
    • H04L41/0846H04L41/082
    • The present invention provides a network configuration restoration method and system which can perform restoration by copying past configuration files in a short time. An updating judging unit 304 judges updating of each network device by comparing an acquired configuration file and a registered configuration file linked to a first identifier representing a copy timing. A new save unit 312 acquires an updated configuration file from a network device, and links the updated configuration file to a first identifier and a second identifier which sets the current timing as a new save timing and saves it in a configuration file database 301. A save unit 311 copies a registered configuration file of a network device whose configuration file has not been updated and links it to a first identifier representing the copy timing and a second identifier linked to this configuration file and saves it.
    • 本发明提供一种可以在短时间内复制过去的配置文件来进行恢复的网络配置恢复方法和系统。 更新判定单元304通过比较获取的配置文件和链接到表示复制定时的第一标识符的注册配置文件来判断每个网络设备的更新。 新的存储单元312从网络设备获取更新的配置文件,并将更新的配置文件链接到第一标识符和将当前定时设置为新的保存定时的第二标识符,并将其保存在配置文件数据库301中。 保存单元311复制其配置文件尚未更新的网络设备的注册配置文件,并将其链接到表示复制定时的第一标识符,以及链接到该配置文件的第二标识符并将其保存。