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    • 22. 发明申请
    • COMPRESSION STATIC AND SEMI-STATIC CONTEXT TRANSFER
    • 压缩静态和半静态背景传输
    • US20090022107A1
    • 2009-01-22
    • US12167732
    • 2008-07-03
    • Rohit KapoorHaipeng JinRashid Ahmed Akbar Attar
    • Rohit KapoorHaipeng JinRashid Ahmed Akbar Attar
    • H04Q7/00
    • H04L69/04H04W28/06H04W36/0055
    • Systems, methodologies, and devices are described that facilitate transferring a subset of compression context from a source base station to a target base station during an inter-base station handover of a mobile device to facilitate establishment of compression context between the mobile device and target base station. The source base station can transfer a subset of compression context comprising static and semi-static context to the target base station during inter-base station handover to at least partially establish compression context between the mobile device and target base station prior to or during handover. The source base station can transmit, to the mobile device, indicator information related to compression context transferred. The target base station can at least partially establish compression context based on received subset of compression context to facilitate efficient communication with the mobile device and can establish any remaining portion of compression context with the mobile device after handover.
    • 描述了在移动设备的基站间切换期间促进将压缩上下文的子集从源基站传送到目标基站的系统,方法和设备,以便于在移动设备和目标基站之间建立压缩上下文 站。 源基站可以在基站间切换期间将包括静态和半静态上下文的压缩上下文的子集传送到目标基站,以在切换之前或期间至少部分地建立移动设备与目标基站之间的压缩上下文。 源基站可以向移动设备发送与传送的压缩上下文相关的指示符信息。 目标基站可以基于所接收的压缩上下文的子集来至少部分地建立压缩上下文,以促进与移动设备的有效通信,并且可以在切换之后与移动设备建立压缩上下文的任何剩余部分。
    • 24. 发明授权
    • Base stations and methods for facilitating dynamic simulcasting and de-simulcasting in a distributed antenna system
    • 用于促进分布式天线系统中的动态联播和解除同步广播的基站和方法
    • US09312941B2
    • 2016-04-12
    • US13461299
    • 2012-05-01
    • Joseph B. SoriagaChristopher Gerard LottJing SunRashid Ahmed Akbar Attar
    • Joseph B. SoriagaChristopher Gerard LottJing SunRashid Ahmed Akbar Attar
    • H04B15/00H04B7/06H04W16/12H04W72/00
    • H04B7/0691H04W16/12H04W72/005
    • Base stations may include a plurality of antenna ports adapted to communicatively couple to respective remote antenna units. A base station simulcast controller module may be coupled with each antenna port, and may be adapted to transmit downlink transmissions over a plurality of remote antenna units, with two or more of the remote antenna units simulcasting downlink transmissions as a simulcasting group. In response to one or more obtained network traffic parameters, the base station simulcast controller module may modify the simulcasting group to include at least one different remote antenna unit. Methods operational on base station may include transmitting downlink transmissions over a plurality of remote antenna units, where two or more of the remote antenna units form a simulcasting group. The simulcasting group can be modified to include at least one different remote antenna unit in response to one or more obtained network traffic parameters.
    • 基站可以包括适于通信地耦合到相应的远程天线单元的多个天线端口。 基站联播控制器模块可以与每个天线端口耦合,并且可以适于在多个远程天线单元上传输下行链路传输,其中两个或多个远程天线单元将下行链路传输同时广播为联播组。 响应于一个或多个获得的网络业务参数,基站联播控制器模块可以修改联播组以包括至少一个不同的远程天线单元。 在基站上操作的方法可以包括在多个远程天线单元中发送下行链路传输,其中两个或更多个远程天线单元形成同时播送组。 响应于一个或多个获得的网络流量参数,可以修改联播组以包括至少一个不同的远程天线单元。
    • 27. 发明授权
    • Reduced terminal power consumption via use of active hold state
    • 通过使用主动保持状态降低终端功耗
    • US08689025B2
    • 2014-04-01
    • US11676902
    • 2007-02-20
    • Rashid Ahmed Akbar AttarNaga BhushanJean Put Ling Au
    • Rashid Ahmed Akbar AttarNaga BhushanJean Put Ling Au
    • G06F1/32
    • H04W52/0229Y02D70/1224Y02D70/1242Y02D70/23
    • An access terminal (AT) in a cellular communication system is configured to operate in an active hold (AH) state, a transitional state between traffic and dormant states. The AT applies power to its transmit chain with a low duty cycle while in the AH state, conserving battery power. To improve robustness of the communications, the radio network may power control the AT to a higher level relative to the power control level of the AT in the traffic state. Transition from the traffic state to the AH state may be initiated after a brief period of inactivity on the reverse link. The AT may remain in the AH state while receiving forward link payload data. Transmission of a reverse link payload packet in the AH state may initiate transition to the traffic state. A prolonged period of inactivity may initiate a transition from the AH state to the dormant state.
    • 蜂窝通信系统中的接入终端(AT)被配置为在主动保持(AH)状态,业务和休眠状态之间的过渡状态下操作。 AT在AH状态下以低占空比向其发射链进行供电,从而节省电池电量。 为了提高通信的鲁棒性,无线电网络可以将AT控制在相对于业务状态的AT的功率控制级别更高的级别。 从交通状态到AH状态的转换可以在反向链路上短暂的不活动状态之后启动。 AT可以在接收到前向链路有效载荷数据时保持在AH状态。 在AH状态下的反向链路有效负载分组的传输可以启动到业务状态的转换。 长时间的不活动可能会从AH状态转移到休眠状态。