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    • 32. 发明授权
    • Detection for end of service using dynamic inactivity timer thresholds
    • 使用动态不活动定时器阈值检测服务结束
    • US08385350B2
    • 2013-02-26
    • US11743802
    • 2007-05-03
    • Reza ShahidiAjith T. PayyappillySrinivasan BalasubramanianLei Shen
    • Reza ShahidiAjith T. PayyappillySrinivasan BalasubramanianLei Shen
    • H04L12/28H04W4/00
    • H04W76/38H04L69/28H04W28/12
    • Techniques to detect for end of service using dynamic inactivity timer thresholds are described. An access terminal establishes a radio connection for one or more applications. Data and signaling for the application(s) may be sent on one or more first flows (e.g., RLP flows) that may carry any number of second flows (e.g., IP flows). The access terminal determines a dynamic inactivity timer threshold for each first flow, e.g., based on at least one inactivity timer threshold for at least one second flow mapped to that first flow. The access terminal determines whether each first flow is inactive based on the inactivity timer threshold for that first flow, e.g., declares each first flow to be inactive if no activity is detected on that first flow for a period exceeding the inactivity timer threshold. The access terminal closes the radio connection when all first flow(s) are determined to be inactive.
    • 描述使用动态不活动定时器阈值检测服务结束的技术。 接入终端为一个或多个应用建立无线电连接。 用于应用的数据和信令可以在可携带任何数量的第二流(例如,IP流)的一个或多个第一流(例如,RLP流)上发送。 接入终端例如基于映射到该第一流的至少一个第二流的至少一个不活动定时器阈值来确定每个第一流的动态不活动定时器阈值。 接入终端基于该第一流的不活动定时器阈值来确定每个第一流是否不活动,例如,如果在超过非活动定时器阈值的时间段内在该第一流上没有检测到活动,则将每个第一流声明为不活动。 当所有第一流被确定为不活动时,接入终端关闭无线电连接。
    • 35. 发明申请
    • ACCESS POINT NAME LIST BASED NETWORK ACCESS MANAGEMENT
    • 访问点名称列表基于网络访问管理
    • US20120113865A1
    • 2012-05-10
    • US13235295
    • 2011-09-16
    • Suli ZhaoSrinivasan Balasubramanian
    • Suli ZhaoSrinivasan Balasubramanian
    • H04W48/20
    • H04W48/20H04W8/183H04W8/20
    • A method is performed by a device. The method includes determining whether the device is allowed to attach to an operator network based at least partially on whether all access point names in a minimum access point name list are enabled in the device. The device allows itself to attach to the operator network if it is determined that the device is allowed to attach to the operator network. The device prevents itself from attaching to the operator network if it is determined that the device is not allowed to attach to the operator network. The device can wirelessly receive a command to disable an access point name in the device. If an access point name on a detach access point name list is disabled, then the device detaches from the operator network and prevents itself from reattaching until an integrated circuit card in the device is removed and replaced.
    • 一种方法由设备执行。 该方法包括至少部分地基于是否在设备中启用了最小接入点名称列表中的所有接入点名称来确定设备是否被允许附加到运营商网络。 如果确定设备被允许附加到操作员网络,则该设备允许其自身附接到操作员网络。 如果确定设备不被允许附加到操作员网络,则设备防止其附着到操作员网络。 设备可以无线接收命令,禁用设备中的接入点名称。 如果分离接入点名称列表上的接入点名称被禁用,则设备将从操作员网络中分离出来,并防止其重新连接,直到设备中的集成电路卡被移除和更换。
    • 36. 发明申请
    • Methods and Apparatus for Calling Party Number Display Solutions for 1xCSFB
    • 呼叫1xCSFB方号码显示解决方法和设备
    • US20110286427A1
    • 2011-11-24
    • US13014583
    • 2011-01-26
    • Masakazu ShirotaJun WangGeorge CherianArvind SwaminathanSrinivasan BalasubramanianRavindra Manohar Patwardhan
    • Masakazu ShirotaJun WangGeorge CherianArvind SwaminathanSrinivasan BalasubramanianRavindra Manohar Patwardhan
    • H04M3/42H04W36/00H04W4/00
    • H04W36/0022H04W68/12
    • Controller and method for Handover (HO) based 1×CSFB communicates Calling Party Number (CPN) to User Equipment (UE) a in a cellular communication system. A first solution provides Interworking Solution (IWS) adding CPN sent to target Base Station Controller (BSC) via Mobile Switching Center (MSC) in Interoperability Specification (IOS) HO messages. A second solution provides that IWS sends CPN with Air Interface HO message and stores the CPN until UE transition to the target Radio Access Network and acquires a traffic channel. A third solution provides that IWS receives CPN from MSC with a paging message and stores the CPN until UE transition to the target Radio Access Network and acquires a traffic channel. A fourth solution provides sending AWI message to the target Radio Access Network from the MSC. A fifth solution provides that IWS sends CPN via Feature Notification Message (FNM) data tunneled to UE before the paging message to let user decide whether to accept a call before leaving 3G/4G cellular communication.
    • 基于移动(HO)的1×CSFB的控制器和方法在蜂窝通信系统中向用户设备(UE)a通信呼叫方号码(CPN)a。 第一个解决方案提供互通解决方案(IWS),通过移动交换中心(MSC)在互操作性规范(IOS)HO消息中添加发送到目标基站控制器(BSC)的CPN。 第二个解决方案规定,IWS向CPN发送空中接口HO消息,并存储CPN,直到UE转移到目标无线接入网络并获取业务信道。 第三个解决方案提供IWS从MSC接收CPN寻呼消息,并存储CPN,直到UE转移到目标无线接入网络并获取业务信道。 第四个解决方案提供从MSC向目标无线电接入网发送AWI消息。 第五个解决方案提供IWS在寻呼消息之前通过隧道传输到UE的功能通知消息(FNM)数据发送CPN,以便在离开3G / 4G蜂窝通信之前决定是否接受呼叫。
    • 37. 发明授权
    • Microhubs and its applications
    • Microhubs及其应用
    • US08041705B2
    • 2011-10-18
    • US12348336
    • 2009-01-05
    • Srinivasan BalasubramanianMichael ChingPiyoosh JalanSatish C. PenmetsaAndrew S. Tomkins
    • Srinivasan BalasubramanianMichael ChingPiyoosh JalanSatish C. PenmetsaAndrew S. Tomkins
    • G06F17/30
    • G06F17/30864Y10S707/99932Y10S707/99937
    • A system and method of crawling at least one website comprising at least one URL includes maintaining a lookup structure comprising all of the URLs known to be on a website; calculating a hub score for each webpage of the website to be recrawled, wherein the hub score measures how likely the to be recrawled webpage includes links to fresh content published on the website; sorting all the to be recrawled pages by their hub scores; and crawling the to be recrawled pages in order from highest hub scores to lowest hub scores. The calculating comprises computing a first value equaling a percentage of a number of new relative URLs on the to be recrawled page; computing a second value equaling a percentage of a previous hub score of the to be recrawled page; and computing the hub score as a sum of the first and the second values.
    • 一种爬行包括至少一个URL的至少一个网站的系统和方法包括维护包括已知在网站上的所有URL的查找结构; 计算要重新抓取的网站的每个网页的中心评分,其中中心评分测量重新获取的网页的可能性包括链接到在网站上发布的新鲜内容; 通过他们的中心分数排序所有要重新抓取的页面; 并从最高中心分数到最低中心分数的顺序爬行重新抓取的页面。 计算包括计算等于要重新获取的页面上的多个新的相对URL的百分比的第一值; 计算等于要重新抓取的页面的先前中心点的百分比的第二值; 以及将所述中心分数计算为所述第一和第二值的总和。
    • 39. 发明申请
    • SESSION-SPECIFIC SIGNALING FOR MULTIPLE ACCESS NETWORKS OVER A SINGLE ACCESS NETWORK
    • 单一访问网络中多个访问网络的会话特定信令
    • US20110039562A1
    • 2011-02-17
    • US12700567
    • 2010-02-04
    • Srinivasan BalasubramanianGeorge Cherian
    • Srinivasan BalasubramanianGeorge Cherian
    • H04W36/00
    • H04W36/0033H04M7/1225H04W76/15
    • Providing for call-specific signaling for call-setup on multiple wireless communication systems via a single wireless access network is described herein. By way of example, a communication context for a mobile device can be established on a first radio access network (RAN). Additionally, call-specific signaling for a wireless session to be conducted by the mobile device over a second RAN can be conducted over the first RAN. Such signaling can be done, for instance, in preparation for an application or wireless session not supported by the first RAN. In addition, upon identifying an invitation for such an application or wireless session involving the mobile device, the mobile device can be switched to the second RAN, while session bindings on the first RAN can be maintained, ported to the second RAN, or terminated. Accordingly, the subject disclosure can reduce signaling complexity while integrating services of diverse deployments of wireless networks.
    • 这里描述了通过单个无线接入网络为多个无线通信系统上的呼叫建立提供呼叫特定信令。 作为示例,可以在第一无线电接入网络(RAN)上建立用于移动设备的通信上下文。 此外,可以在第一RAN上进行由移动设备通过第二RAN进行的无线会话的呼叫专用信令。 这样的信令可以例如在为第一RAN不支持的应用或无线会话的准备中完成。 此外,在识别涉及移动设备的这样的应用或无线会话的邀请时,可以将移动设备切换到第二RAN,而可以维护第一RAN上的会话绑定,移植到第二RAN或终止。 因此,本发明可以在整合无线网络的各种部署的服务的同时降低信令复杂度。
    • 40. 发明申请
    • CALL ESTABLISHMENT AND MAINTENANCE IN A WIRELESS NETWORK
    • 在无线网络中建立和维护电话
    • US20100329225A1
    • 2010-12-30
    • US12788517
    • 2010-05-27
    • Srinivasan Balasubramanian
    • Srinivasan Balasubramanian
    • H04W4/22
    • H04L41/5054H04L41/0253H04L41/0806H04L43/0847H04L43/0852H04L43/087H04L43/16H04W4/90H04W48/18H04W76/10H04W76/50
    • Techniques to configure quality of service (QoS) and utilize radio resources for a call in a WLAN are described. In an aspect, a station ensures that an access point in the WLAN is suitable for receiving service prior to performing registration to receive services via the WLAN. In another aspect, the station first requests for radio resources for traffic flows, then requests for radio resources for signaling flows, and sends signaling as best effort traffic if radio resources are not granted for the signaling flows. In yet another aspect, the station aggregates QoS for multiple applications and requests for radio resources based on the aggregated QoS. In yet another aspect, the station releases extra radio resources corresponding to the difference between the QoS granted by the WLAN and the QoS proposed by a remote terminal for the call. In yet another aspect, the station requests for the same QoS or lower from a new access point during handoff.
    • 描述了在WLAN中配置服务质量(QoS)和利用无线电资源进行呼叫的技术。 在一个方面,站确保WLAN中的接入点适合于在执行注册之前接收服务以经由WLAN接收服务。 在另一方面,站首先请求无线电资源用于业务流,然后请求用于信令流的无线电资源,并且如果未向信令流授予无线电资源,则将信令作为尽力流量发送。 在另一方面,站聚合基于聚合QoS的多个应用的​​QoS和对无线电资源的请求。 在另一方面,该站释放对应于由WLAN授予的QoS与针对该呼叫的远程终端提出的QoS之间的差异的额外的无线电资源。 在另一方面,站在切换期间从新的接入点请求相同的QoS或更低的QoS。