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    • 1. 发明授权
    • Adaptive fast dormancy controller
    • 自适应快速休眠控制器
    • US09198219B2
    • 2015-11-24
    • US13605156
    • 2012-09-06
    • Yuheng HuangBongyong SongSamir Salib Soliman
    • Yuheng HuangBongyong SongSamir Salib Soliman
    • H04L1/00H04W76/06
    • H04W76/068H04W76/38
    • Methods, devices, and instructions stored in non-transitory computer-readable medium are provided for adaptively adjusting when a mobile device requests fast dormancy (FD) by determining when applications executing on the mobile device stop using a connection to a cellular telecommunications network. An adaptive fast dormancy controller function executing on a processor of the mobile device monitors network traffic activity by the applications. The adaptive fast dormancy controller function may determine that an open network connection should be released using a device traffic inactivity timer that times durations of network inactivity by applications. The duration of the device traffic inactivity timer may be adjusted based upon observed application and/or network conditions. Multiple device traffic inactivity timers may be used to enable timing traffic inactivity of each application or groups of applications executing on the mobile device.
    • 提供了存储在非暂时性计算机可读介质中的方法,设备和指令,用于通过确定何时在移动设备上执行的应用停止使用到蜂窝电信网络的连接来自适应地调整移动设备何时请求快速休眠(FD)。 在移动设备的处理器上执行的自适应快速休眠控制器功能监视应用的网络业务活动。 自适应快速休眠控制器功能可以确定应该使用设备流量不活动定时器来释放开放的网络连接,该定时器使应用程序的网络不活动的持续时间持续。 可以基于观察到的应用和/或网络条件来调整设备流量不活动定时器的持续时间。 可以使用多个设备流量不活动定时器来启用在移动设备上执行的每个应用或应用组的定时业务不活动。
    • 3. 发明授权
    • Supporting voice for flexible bandwidth systems
    • 支持灵活带宽系统的语音
    • US09001679B2
    • 2015-04-07
    • US13491510
    • 2012-06-07
    • Soumya DasOzgur DuralEdwin C. ParkBongyong SongSamir Salib SolimanYuheng Huang
    • Soumya DasOzgur DuralEdwin C. ParkBongyong SongSamir Salib SolimanYuheng Huang
    • H04J13/10H04W74/00H04W28/02H04L12/801H04J13/00H04W72/00G10L19/16H04W52/12H04W52/20
    • H04J13/0077G10L19/16H04W52/12H04W52/20H04W72/00
    • Methods, systems, and devices for supporting voice communications in a wireless communications system are provided. Some embodiments utilize multiple code channels to transmit the voice frames. These embodiments include parallel multi-code embodiments, offset multi-code embodiments, and multi-user multi-code embodiments. Some embodiments utilize flexible carrier bandwidths systems that may utilize portions of spectrum that may not be big enough to fit a normal bandwidth waveform. Some embodiments transmit and receive a subset of subframes of voice frames received over flexible bandwidth code channels. In some embodiments, a subset of subframes based on a flexible bandwidth scaling factor of one or more flexible bandwidth code channels is transmitted. The receiver may decode the voice frame based on the received subset of subframes. An outer loop power control set-point may be adjusted to provide a predetermined frame error rate based on the number of transmitted subframes.
    • 提供了用于在无线通信系统中支持语音通信的方法,系统和设备。 一些实施例利用多个代码信道来发送语音帧。 这些实施例包括并行多代码实施例,偏移多代码实施例和多用户多代码实施例。 一些实施例使用灵活的载波带宽系统,其可以利用可能不够大以适应正常带宽波形的频谱部分。 一些实施例发送和接收在灵活的带宽码信道上接收的语音帧的子帧子集。 在一些实施例中,发送基于一个或多个柔性带宽码信道的灵活带宽缩放因子的子帧子集。 接收机可以基于所接收的子帧子集对语音帧进行解码。 可以调整外部环路功率控制设定点,以基于发送的子帧的数量来提供预定的帧错误率。
    • 4. 发明授权
    • Access point synchronization with cooperative mobile devices
    • 与合作移动设备的接入点同步
    • US08731560B2
    • 2014-05-20
    • US13423090
    • 2012-03-16
    • Bongyong SongKaushik ChakrabortySamir Salib Soliman
    • Bongyong SongKaushik ChakrabortySamir Salib Soliman
    • H04W36/00
    • H04W56/001H04W56/0015Y02D70/1242Y02D70/1262Y02D70/142Y02D70/144Y02D70/146Y02D70/164Y02D70/22
    • A mobile device provides first information to an access point over an out-of-band wireless link. The access point uses the first information to coarsely synchronize with a macrocell base station. The access point transmits a low power pilot signal that is formed using a pseudo-random noise (PN) sequence. The mobile device uses the out-of-band wireless link to provide second information to the access point that indicates a PN phase of the pilot signal with respect to a reference time point. The access point uses the second information to finely synchronize with the macrocell base station. The mobile device communicates with a mobile operator core network through the access point using an in-band wireless link to the access point. The mobile device compensates for propagation delay when obtaining time information. The mobile device provides additional information to the access point, which the access point uses to adjust for continued clock drift.
    • 移动设备通过带外无线链路向接入点提供第一信息。 接入点使用第一信息与宏小区基站粗略同步。 接入点发送使用伪随机噪声(PN)序列形成的低功率导频信号。 移动设备使用带外无线链路来向接入点提供相对于参考时间点指示导频信号的PN相位的第二信息。 接入点使用第二信息与宏小区基站精细同步。 移动设备使用到接入点的带内无线链路通过接入点与移动运营商核心网络进行通信。 移动设备在获取时间信息时补偿传播延迟。 移动设备向接入点提供附加信息,接入点用于调整持续的时钟漂移。
    • 6. 发明申请
    • Method and System for Femtocell Positioning
    • 免疫球蛋白定位方法与系统
    • US20130196680A1
    • 2013-08-01
    • US13360463
    • 2012-01-27
    • Samir Salib SolimanKaushik ChakrabortyBongyong SongSoumya Das
    • Samir Salib SolimanKaushik ChakrabortyBongyong SongSoumya Das
    • H04W64/00
    • H04W64/003H04W84/10
    • Method and system for femtocell positioning are disclosed. An apparatus includes one or more processors, a femtocell positioning module configured to determine position of a femtocell, and a memory configured to store position of the femtocell. The femtocell positioning module, working with the one or more processors, includes logic configured to identify one or more wireless terminals and receive location information from the one or more wireless terminals via a first communication channel and determine position of the femtocell in accordance with the location information from the one or more wireless terminals. The femtocell positioning module further includes logic configured to obtain multiple set of range measurements between the femtocell and the one or more wireless terminals, logic configured to determine position of the femtocell in accordance with the location information and the multiple set of range measurements between the femtocell and the one or more wireless terminals.
    • 公开了用于毫微微小区定位的方法和系统。 一种装置包括一个或多个处理器,被配置为确定毫微微小区的位置的毫微微小区定位模块以及被配置为存储毫微微小区的位置的存储器。 与一个或多个处理器一起工作的毫微微小区定位模块包括被配置为识别一个或多个无线终端并经由第一通信信道从一个或多个无线终端接收位置信息并根据位置确定毫微微小区的位置的逻辑 来自一个或多个无线终端的信息。 毫微微小区定位模块还包括被配置为在毫微微小区和一个或多个无线终端之间获得多组距离测量的逻辑,所述逻辑被配置为根据位置信息和毫微微小区之间的多组距离测量来确定毫微微小区的位置 和一个或多个无线终端。