EVENT 6D ENHANCEMENTS
    2.
    发明申请
    EVENT 6D ENHANCEMENTS 有权
    事件6D增强

    公开(公告)号:US20150373605A1

    公开(公告)日:2015-12-24

    申请号:US14641038

    申请日:2015-03-06

    CPC classification number: H04L1/0001 H04W52/365 H04W52/367 H04W88/06

    Abstract: The present aspects relate to enabling a user equipment (UE) to operate in Dual Carrier mode during wireless communication, including generating an event trigger to be transmitted to a network entity in response to the UE satisfying a maximum transmit power threshold value, wherein generating the event trigger initiates a trigger timer that controls when to transmit the event trigger to the network. The aspects further include determining whether a plurality of optimization conditions are met, and modifying a transmission scheme based on the determination that the plurality of optimization conditions are met, wherein modifying the transmission scheme prevents the transmission of the event trigger to the network entity and resets the trigger timer.

    Abstract translation: 本方面涉及在无线通信期间使用户设备(UE)能够以双载波模式操作,包括响应于UE满足最大发射功率阈值而生成要发送到网络实体的事件触发,其中, 事件触发器启动一个触发计时器,用于控制什么时候将事件触发传送到网络。 这些方面还包括确定是否满足多个优化条件,以及基于满足多个优化条件的确定修改传输方案,其中修改传输方案防止事件触发传输到网络实体并重置 触发计时器。

    TECHNIQUES FOR OPTIMIZING TRANSMISSION POWER ALLOCATION IN WIRELESS COMMUNICATIONS
    3.
    发明申请
    TECHNIQUES FOR OPTIMIZING TRANSMISSION POWER ALLOCATION IN WIRELESS COMMUNICATIONS 有权
    在无线通信中优化传输功率分配的技术

    公开(公告)号:US20160029391A1

    公开(公告)日:2016-01-28

    申请号:US14579004

    申请日:2014-12-22

    Abstract: Aspects related to allocating transmission power in wireless communications are described. It can be determined whether data is to be transmitted on an uplink control channel in one or more upcoming transmission time intervals (TTIs). Based on this determination, transmission power is allocated to an uplink enhanced dedicated channel in the one or more upcoming TTIs. Where uplink control channel data is not to be transmitted in the one or more upcoming TTIs, transmission power that would have been used for the uplink control channels can instead be allocated to the enhanced dedicated channel.

    Abstract translation: 描述了在无线通信中分配传输功率方面。 可以确定在一个或多个即将到来的传输时间间隔(TTI)中是否在上行链路控制信道上发送数据。 基于该确定,在一个或多个即将到来的TTI中将发送功率分配给上行链路增强专用信道。 在一个或多个即将到来的TTI中不发送上行链路控制信道数据的情况下,可以将已经用于上行链路控制信道的传输功率分配给增强型专用信道。

    APPARATUS AND METHODS FOR CONTINUOUS INTER-FREQUENCY MEASUREMENT RECONFIGURATIONS OF DC-HSUPA UE
    4.
    发明申请
    APPARATUS AND METHODS FOR CONTINUOUS INTER-FREQUENCY MEASUREMENT RECONFIGURATIONS OF DC-HSUPA UE 有权
    DC-HSUPA UE的连续频率测量重构的装置和方法

    公开(公告)号:US20150036518A1

    公开(公告)日:2015-02-05

    申请号:US14166628

    申请日:2014-01-28

    CPC classification number: H04W24/08 H04W24/10 H04W36/0088

    Abstract: Disclosed are systems and methods for continuous inter-frequency measurement reconfigurations in a DC-HSUPA User Equipment (UE). In one aspect, the system may configure the UE to perform intra-frequency measurements on a frequency f1 and inter-frequency measurements on a frequency f2 in a dual carrier (DC) downlink (DL) mode and a single carrier (SC) uplink (UL) mode. The system may then reconfigure the UE to operate in a DC UL mode and continuing to perform inter-frequency measurements on the frequency f2 in the DC UL mode. The system may then reconfigure the UE to operate in the SC UL mode and continuing to perform inter-frequency measurements on frequency f2 in the SC UL mode.

    Abstract translation: 公开了用于DC-HSUPA用户设备(UE)中的连续频率间测量重新配置的系统和方法。 在一个方面,系统可以配置UE在双载波(DC)下行链路(DL)模式和单载波(SC)上行链路(DC)下行链路(DL)模式的频率f2上对频率f1和频率间测量执行频率内测量 UL)模式。 然后,系统可以重新配置UE以在DC UL模式下工作,并且继续在DC UL模式下对频率f2执行频率间测量。 然后,系统可以重新配置UE以在SC UL模式下工作,并且继续在SC UL模式下对频率f2进行频率间测量。

    PRIORITIZING TIME CRITICAL DATA FOR TRANSMISSION DURING POWER LIMITED STATE IN DC-HSUPA OPERATION
    5.
    发明申请
    PRIORITIZING TIME CRITICAL DATA FOR TRANSMISSION DURING POWER LIMITED STATE IN DC-HSUPA OPERATION 有权
    在DC-HSUPA操作期间,有限公司期间的传输优先时间重要数据

    公开(公告)号:US20140254505A1

    公开(公告)日:2014-09-11

    申请号:US14057699

    申请日:2013-10-18

    Abstract: Techniques for prioritizing time critical data for transmission during a power-limited state in DC-HSUPA operation are described. A user equipment (UE) may be in a power-limited state. The UE may identify non-scheduled, time critical data and scheduled data as available for transmission. The UE may detect that a minimum transport block size is about to be selected for a transmission on a secondary uplink carrier. The UE may prioritize the non-scheduled, time critical data over the scheduled data and transmit the non-scheduled, time critical data on a primary uplink carrier based on the prioritizing. The UE also may transmit the scheduled data during a transmission time interval (TTI) that is different from the TTI during which the non-scheduled, time critical data was transmitted. The non-scheduled, time critical data and the scheduled data may be transmitted using transmit diversity.

    Abstract translation: 描述了在DC-HSUPA操作中在功率限制状态期间优先处理用于传输的时间关键数据的技术。 用户设备(UE)可以处于功率受限状态。 UE可以识别非调度的时间关键数据和可用于传输的调度数据。 UE可以检测到对于辅助上行链路载波上的传输将要选择最小传输块大小。 UE可以通过调度的数据对未调度的时间关键数据进行优先级排序,并且基于优先级在主上行链路载波上发送非调度的时间关键数据。 在不同于传输非调度的时间关键数据的TTI的传输时间间隔(TTI)期间,UE还可以发送调度数据。 可以使用发射分集来发送非调度的时间关键数据和调度数据。

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