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    • 2. 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。
    • 4. 发明授权
    • Protocol fallback technique for wireless data communications
    • 无线数据通信的协议回退技术
    • US08817600B2
    • 2014-08-26
    • US12621062
    • 2009-11-18
    • Ajith T. PayyappillySrinivasan Balasubramanian
    • Ajith T. PayyappillySrinivasan Balasubramanian
    • H04W74/02H04W76/02H04W36/00H04W28/04H04W60/02
    • H04W76/027H04W28/04H04W36/0066H04W60/02H04W76/18H04W76/19
    • A wireless communications device is configured to establish a radio level session with a network at a relatively high or highest protocol level among a plurality of protocol levels supported. Upon failures in establishing, or during, a network level data session, the radio level session is closed. Thereafter, the device re-attempts to establish the network level session at a lower, fallback protocol level, by pretending it is a legacy device incapable of supporting the high protocol level. In this manner, the network is likely to follow a different procedure in establishing data communications, whereby an error that caused the failure is less likely to be repeated. As examples, error conditions in eHRPD data sessions result in fallback to HRPD or 1xRTT data sessions. A network based alternative embodiment implements protocol fallback via appropriate fallback instructions to the wireless device.
    • 无线通信设备被配置为在所支持的多个协议级别中的相对较高或最高协议级别与网络建立无线电级会话。 在建立或在网络级数据会话期间发生故障时,关闭无线电级别会话。 此后,设备重新尝试以较低的回退协议级别建立网络级会话,假设它是不能支持高协议级别的传统设备。 以这种方式,网络可能遵循建立数据通信的不同过程,由此导致故障的错误不太可能被重复。 作为示例,eHRPD数据会话中的错误条件导致HRPD或1xRTT数据会话的回退。 基于网络的替代实施例通过适当的回退指令实现到无线设备的协议回退。
    • 7. 发明申请
    • Protocol Fallback Technique for Wireless Data Communications
    • 无线数据通信的协议回退技术
    • US20100177629A1
    • 2010-07-15
    • US12621062
    • 2009-11-18
    • Ajith T. PayyappillySrinivasan Balasubramanian
    • Ajith T. PayyappillySrinivasan Balasubramanian
    • H04W24/00H04L12/24
    • H04W76/027H04W28/04H04W36/0066H04W60/02H04W76/18H04W76/19
    • A wireless communications device is configured to establish a radio level session with a network at a relatively high or highest protocol level among a plurality of protocol levels supported. Upon failures in establishing, or during, a network level data session, the radio level session is closed. Thereafter, the device re-attempts to establish the network level session at a lower, fallback protocol level, by pretending it is a legacy device incapable of supporting the high protocol level. In this manner, the network is likely to follow a different procedure in establishing data communications, whereby an error that caused the failure is less likely to be repeated. As examples, error conditions in eHRPD data sessions result in fallback to HRPD or 1xRTT data sessions. A network based alternative embodiment implements protocol fallback via appropriate fallback instructions to the wireless device.
    • 无线通信设备被配置为在所支持的多个协议级别中的相对较高或最高协议级别与网络建立无线电级会话。 在建立或在网络级数据会话期间发生故障时,关闭无线电级别会话。 此后,设备重新尝试以较低的回退协议级别建立网络级会话,假设它是不能支持高协议级别的传统设备。 以这种方式,网络可能遵循建立数据通信的不同过程,由此导致故障的错误不太可能被重复。 作为示例,eHRPD数据会话中的错误条件导致HRPD或1xRTT数据会话的回退。 基于网络的替代实施例通过适当的回退指令实现到无线设备的协议回退。
    • 8. 发明授权
    • Resource management for a wireless device
    • 无线设备的资源管理
    • US08516101B2
    • 2013-08-20
    • US12708319
    • 2010-02-18
    • Srinivasan BalasubramanianAjith T. PayyappillyReza ShahidiKevin S. SeltmannSuli Zhao
    • Srinivasan BalasubramanianAjith T. PayyappillyReza ShahidiKevin S. SeltmannSuli Zhao
    • G06F15/173
    • H04L47/25H04L47/11H04L47/266H04W28/02
    • Techniques for managing resources on a wireless device are described. In an aspect, congestion of resources on the wireless device may be detected. If any resources are deemed to be congested, then congestion of the congested resources may be relieved by controlling utilization of the congested resources by at least one client. In one design, flow control may be performed for at least one data flow to relieve congestion of the congested resources. A pattern indicative of when to send messages enabling data transmission and when to send messages disabling data transmission may be selected. Messages may then be sent in accordance with the pattern to control transmission of data for the at least one data flow. Another pattern with a higher ON fraction or a lower ON fraction may be selected based on usage of the congested resources.
    • 描述了用于在无线设备上管理资源的技术。 在一方面,可以检测无线设备上的资源拥塞。 如果任何资源被认为是拥塞的,则可以通过控制至少一个客户端对拥塞的资源的利用来减轻拥塞资源的拥塞。 在一种设计中,可以对至少一个数据流执行流控制以减轻拥塞资源的拥塞。 可以选择指示何时发送能够进行数据传输的消息以及何时发送禁用数据传输的消息的模式。 然后可以根据模式发送消息以控制用于至少一个数据流的数据的传输。 可以基于拥塞资源的使用来选择具有较高ON分数或较低ON分数的另一模式。