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    • 4. 发明授权
    • Method, system and apparatus for dynamic quality of service modification
    • 动态修改服务质量的方法,系统和设备
    • US08730972B2
    • 2014-05-20
    • US13448578
    • 2012-04-17
    • Jean-Phillippe Paul CormierThomas Leonard Trevor PlestidMuhammad Khaledul Islam
    • Jean-Phillippe Paul CormierThomas Leonard Trevor PlestidMuhammad Khaledul Islam
    • H04L12/28
    • H04L63/0272H04W12/02H04W84/04
    • A method and apparatus for dynamically modifying the quality of service (QoS) provided to a mobile communication device are disclosed. In one embodiment, a mobile communication device comprises a secure channel driver operable to establish a secure tunnel between the mobile communication device and a remote network via a wireless network, the secure tunnel operable to support multiple sockets opened therein; a first application operable to communicate with the remote network via a first socket within the secure tunnel and associated with a first QoS; a second application operable to communicate with the remote network via a second socket within the secure tunnel and associated with a second QoS, different from the first QoS; a QoS monitor operable to identify when the second QoS is appropriate to support the second application; and a QoS modification module operable to request the second QoS from the wireless network.
    • 公开了一种用于动态地修改提供给移动通信设备的服务质量(QoS)的方法和装置。 在一个实施例中,移动通信设备包括可操作以经由无线网络在移动通信设备和远程网络之间建立安全通道的安全通道驱动器,所述安全通道可操作以支持在其中打开的多个插槽; 第一应用,其可操作以经由所述安全隧道内的第一套接字与所述远程网络通信并与第一QoS相关联; 第二应用,其可操作以经由所述安全隧道内的第二套接字与所述远程网络通信,并且与不同于所述第一QoS的第二QoS相关联; QoS监视器,可操作以识别何时第二QoS适于支持第二应用; 以及QoS修改模块,其可操作以从所述无线网络请求所述第二QoS。
    • 5. 发明申请
    • PROVISIONING RADIO RESOURCES IN A RADIO ACCESS NETWORK
    • 在无线接入网络中提供无线电资源
    • US20130288729A1
    • 2013-10-31
    • US13459205
    • 2012-04-29
    • Muhammad Khaledul ISLAMOzgur EkiciJan Hendrik Lucas Bakker
    • Muhammad Khaledul ISLAMOzgur EkiciJan Hendrik Lucas Bakker
    • H04W72/04
    • H04W72/0406H04W76/12H04W76/18
    • A radio resource request in a radio access network (RAN) may be handled differently depending whether provision of the requested radio resource has been specified as optional (discretionary) or not optional (not discretionary). In the former case, the radio resource request may be discarded, rejected or delayed. In the latter case, the radio resource request may be accepted. In one embodiment, a running timer at a UE may indicate that a radio resource optionally to be provided was not provided by a RAN. When a subsequent request for the radio resource is accepted, the timer may be cleared. One or more UE applications may accordingly selectively subject user-plane data to be exchanged via the RAN, to a back-off delay scheme, to promoting acceptable responsiveness at UE applications that are, e.g. being actively used by a user. Radio resource requests may including RRC Connection Request and Cell Update messages.
    • 无线电接入网络(RAN)中的无线电资源请求可以被不同地处理,这取决于所请求的无线电资源的提供是否被指定为可选的(任意的)或不是可选的(不是任意的)。 在前一种情况下,无线电资源请求可能被丢弃,拒绝或延迟。 在后一种情况下,无线电资源请求可以被接受。 在一个实施例中,UE处的运行定时器可以指示可选地要提供的无线电资源不是由RAN提供的。 当接收到无线电资源的后续请求时,可以清除定时器。 因此,一个或多个UE应用可以相应地选择性地将经由RAN交换的用户平面数据定向到退避延迟方案,以促进在UE应用处的可接受的响应性,例如, 被用户主动使用。 无线电资源请求可以包括RRC连接请求和小区更新消息。
    • 9. 发明授权
    • Wireless device battery conservation method and system
    • 无线设备电池的保存方法和系统
    • US08311594B2
    • 2012-11-13
    • US13410672
    • 2012-03-02
    • Muhammad Khaledul IslamAsif Hossain
    • Muhammad Khaledul IslamAsif Hossain
    • H04B1/38
    • H04W52/0245Y02D70/164
    • Generally, the present invention provides a method for detecting poor RF conditions, and entering different sleep mode levels or phases in accordance with the RF conditions to save battery power. Mobile device battery life can be conserved when the mobile device detects poor RF conditions and enters a deep sleep mode of operation. In this deep sleep mode of operation the mobile device periodically samples the RF conditions and gradually increases the period between samples when the RF conditions do not improve. Because mobility can change the RF condition for wireless devices even in areas of good RF coverage, the mobile device operating in the deep sleep mode can detect this mobility and thus enhance the probability of entering an idle state, or alternatively, entering a longer power save mode. When the RF condition improves, the mobile device exits from the deep sleep mode and returns to the idle state.
    • 通常,本发明提供了一种用于检测不良RF状况的方法,并且根据RF条件进入不同的睡眠模式级别或阶段以节省电池电力。 当移动设备检测到差的RF条件并进入深度睡眠操作模式时,可以节省移动设备的电池寿命。 在这种深度睡眠操作模式中,当RF条件不改善时,移动设备周期性地对RF条件进行采样并逐渐增加样本之间的周期。 因为即使在良好的射频覆盖区域中,移动性也可以改变无线设备的射频条件,所以在深度睡眠模式下工作的移动设备可以检测这种移动性,从而提高进入空闲状态的可能性,或者替换地,进入更长的功率节省 模式。 当RF条件改善时,移动设备退出深度睡眠模式并返回到空闲状态。