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    • 64. 发明申请
    • Discontinuous Reception (DRX) Timer Triggered with the Transmission of a Buffer Status Report (BSR)
    • 不连续接收(DRX)定时器与缓冲器状态报告(BSR)的传输触发
    • US20110026625A1
    • 2011-02-03
    • US12936100
    • 2008-12-08
    • Riikka SusitaivalMagnus LindstromGhyslain PelletierAnna Larmo
    • Riikka SusitaivalMagnus LindstromGhyslain PelletierAnna Larmo
    • H04L27/28H04B7/00
    • H04W52/0251Y02D70/1222Y02D70/1224Y02D70/1262Y02D70/164Y02D70/24
    • A method implemented at a user equipment (UE) may include receiving a grant from a base station permitting the user equipment to transmit data to the base station and transmitting data to the base station, where the data includes a buffer status report (BSR) that indicates an amount of data in a buffer of the UE. The method may further include starting or restarting a discontinuous reception (DRX) timer when the data including the BSR is transmitted to the base station. The method may additionally include monitoring (730) a control channel during a duration of the DRX timer. In another implementation, a method may include receiving a feedback message in response to the data transmission including the BSR, and starting or restarting the discontinuous reception (DRX) timer when the feedback message is received. The feedback message may include an acknowledgement (ACK) or a negative acknowledgement (NACK). In a further implementation, a method may include starting a process specific hybrid automatic repeat request (HARQ) round trip time (RTT) timer upon transmission of the data including the BSR, starting a grant timer when the HARQ RTT timer expires, and monitoring the control channel during a duration of the grant timer.
    • 在用户设备(UE)处实现的方法可以包括从基站接收允许用户设备向基站发送数据并向基站发送数据的许可,其中数据包括缓冲器状态报告(BSR) 表示UE的缓冲器中的数据量。 该方法还可以包括当包括BSR的数据被发送到基站时启动或重新启动不连续接收(DRX)定时器。 该方法可以另外包括在DRX定时器的持续时间期间监视(730)控制信道。 在另一实现中,一种方法可以包括响应于包括BSR的数据传输接收反馈消息,以及当接收到反馈消息时开始或重新启动不连续接收(DRX)定时器。 反馈消息可以包括确认(ACK)或否定确认(NACK)。 在进一步的实现中,一种方法可以包括在传输包括BSR的数据时启动进程特定的混合自动重传请求(HARQ)往返时间(RTT)定时器,当HARQ RTT定时器到期时启动授权定时器,并监视 在授权定时器的持续时间内控制信道。
    • 66. 发明申请
    • Compressed Buffer Status Reports in LTE
    • LTE中的压缩缓冲区状态报告
    • US20100284314A1
    • 2010-11-11
    • US12811585
    • 2008-07-02
    • Ghyslain PelletierHenrik EnbuskeMagnus LindstromJanne Peisa
    • Ghyslain PelletierHenrik EnbuskeMagnus LindstromJanne Peisa
    • H04L12/56H04L27/00H04B7/00
    • H04W72/1284H04L47/30
    • Methods and apparatus for producing a compressed buffer status report (400) for use in a wireless network are disclosed. In several of the disclosed embodiments, a wireless terminal (160) forms a compressed buffer status report (400) that includes a field (410) of one or more bits that indicate an overall status corresponding to all or substantially all of the uplink data buffers for the wireless terminal (160), along with one or more fields (420) that indicate buffer status for specific corresponding radio bearers or groups of radio bearers. Accordingly, a small buffer report (410) may be sent in-band with the uplink data transmission, such as in headers (810) of one or more MAC packet data units (800), to convey information about the status of the wireless terminal's buffers, both for all the buffers (i.e., collectively), and for each of several high-priority radio bearers or groups of radio bearers.
    • 公开了用于产生无线网络中使用的压缩缓冲状态报告(400)的方法和装置。 在所公开的几个实施例中,无线终端(160)形成压缩缓冲器状态报告(400),该压缩缓冲器状态报告(400)包括指示与所有或基本上所有上行链路数据缓冲器相对应的总体状态的一个或多个位的字段(410) 以及指示用于特定对应的无线电承载或无线电承载组的缓冲器状态的一个或多个字段(420)的无线终端(160)。 因此,可以在诸如在一个或多个MAC分组数据单元(800)的头部(810)中的上行链路数据传输的带内发送小的缓冲器报告(410),以传达关于无线终端的状态的信息 缓冲器(对于所有缓冲器(即,集体地))以及几个高优先级无线电承载或无线电承载组中的每一个。
    • 68. 发明申请
    • CONGESTION CONTROL IN A TRANSMISSION NODE
    • 传输节点中的约束控制
    • US20090067335A1
    • 2009-03-12
    • US12168078
    • 2008-07-04
    • Ghyslain PelletierDaniel EnstromStefan Wanstedt
    • Ghyslain PelletierDaniel EnstromStefan Wanstedt
    • H04L12/56
    • H04L41/5025H04L41/5003H04L47/10H04L47/31H04L47/32
    • Packets are selectively marked or dropped when congestion of the radio resources is experienced, the selective marking/dropping being related to or dependent on the probability that a packet will be marked with the relative efficiency of usage of the radio link by the receiver, e.g., dependent upon radio resource usage costs and fairness. For example, packets are marked or dropped based on a user's associated share of the total (or a subset of the) shared radio resources. This share may be expressed in terms of the costs of the resources in terms the user's level of utilization of the shared resources, or in terms of it's fairness with respect to other users sharing the same resources. Thus, the present technology takes into account the distribution of resources usage between receivers contributing to the congested state of the radio network.
    • 当无线电资源的拥塞经历时,选择性地标记或丢弃分组,选择性标记/丢弃与分组将以接收机的无线电链路的使用的相对效率被标记的概率相关联, 取决于无线电资源使用成本和公平性。 例如,基于用户的总共(或一部分)共享无线电资源的关联共享来标记或删除数据包。 这个份额可以用资源的成本来表达,用户对共享资源的利用水平,或者在共享相同资源的其他用户方面是公平的。 因此,本技术考虑到对无线电网络的拥塞状态有贡献的接收机之间的资源使用的分配。