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    • 1. 发明申请
    • RLC DATA TRANSMISSION CONTROL BASED ON UE MEMORY CAPACITY
    • 基于UE存储容量的RLC数据传输控制
    • US20130010705A1
    • 2013-01-10
    • US13178048
    • 2011-07-07
    • Anders JonssonChrister Henriksson
    • Anders JonssonChrister Henriksson
    • H04W72/04
    • H04W28/0205H04L47/27H04W28/18H04W72/04H04W88/08
    • Data transmission with a wireless communication device which communicates over an air interface with a radio network is controlled by setting a radio link control (RLC) window size for a first logical connection established with the wireless communication device over the air interface, the RLC window size indicating a number of RLC protocol data units (PDUs), periodically estimating a total amount of memory available at the wireless communication device for storing RLC PDUs, and controlling transmission of RLC PDUs associated with the first logical connection to the wireless communication device based on the estimated total amount of memory available at the wireless communication device for storing RLC PDUs, or based on the RLC window size set for the first logical connection if the RLC window size limits the transmission of the RLC PDUs more than the estimated total amount of memory available at the wireless communication device.
    • 通过空中接口与无线电网络进行通信的无线通信设备的数据传输是通过空中接口为无线通信设备建立的第一逻辑连接设置无线链路控制(RLC)窗口大小来控制的,RLC窗口大小 指示多个RLC协议数据单元(PDU),周期性地估计在无线通信设备处可用于存储RLC PDU的总存储量,以及基于该无线通信设备控制与第一逻辑连接相关联的RLC PDU的传输 如果所述RLC窗口大小限制所述RLC PDU的传输超过所估计的可用存储器总量,则基于为所述第一逻辑连接设置的所述RLC窗口大小估计的所述用于存储RLC PDU的所述无线通信设备处的可用存储器总量可用 在无线通信设备。
    • 2. 发明授权
    • RLC Data transmission control based on UE memory capacity
    • RLC数据传输控制基于UE的存储容量
    • US09055464B2
    • 2015-06-09
    • US13178048
    • 2011-07-07
    • Anders JonssonChrister Henriksson
    • Anders JonssonChrister Henriksson
    • H04W4/00H04W28/02H04L12/807H04W88/08H04W72/04H04W28/18
    • H04W28/0205H04L47/27H04W28/18H04W72/04H04W88/08
    • Data transmission with a wireless communication device which communicates over an air interface with a radio network is controlled by setting a radio link control (RLC) window size for a first logical connection established with the wireless communication device over the air interface, the RLC window size indicating a number of RLC protocol data units (PDUs), periodically estimating a total amount of memory available at the wireless communication device for storing RLC PDUs, and controlling transmission of RLC PDUs associated with the first logical connection to the wireless communication device based on the estimated total amount of memory available at the wireless communication device for storing RLC PDUs, or based on the RLC window size set for the first logical connection if the RLC window size limits the transmission of the RLC PDUs more than the estimated total amount of memory available at the wireless communication device.
    • 通过空中接口与无线电网络进行通信的无线通信设备的数据传输是通过空中接口为无线通信设备建立的第一逻辑连接设置无线链路控制(RLC)窗口大小来控制的,RLC窗口大小 指示多个RLC协议数据单元(PDU),周期性地估计在无线通信设备处可用于存储RLC PDU的总存储量,以及基于该无线通信设备控制与第一逻辑连接相关联的RLC PDU的传输 如果所述RLC窗口大小限制所述RLC PDU的传输超过所估计的可用存储器总量,则基于为所述第一逻辑连接设置的所述RLC窗口大小估计的所述用于存储RLC PDU的所述无线通信设备处的可用存储器总量可用 在无线通信设备。
    • 7. 发明申请
    • Dynamic Adaptation of Downlink RLC PDU Size
    • 下行RLC PDU大小的动态适配
    • US20110249563A1
    • 2011-10-13
    • US13075254
    • 2011-03-30
    • Simone ProvvediAnders Jonsson
    • Simone ProvvediAnders Jonsson
    • H04W24/00
    • H04W28/065
    • Embodiments herein dynamically adapt the size of downlink Radio Link Control (RLC) protocol data units (PDUs) sent by a radio network controller (RNC) to a user equipment (UE) via a base station. Notably, the RNC effectively matches downlink RLC PDU size to the radio conditions at the UE using one or more indirect indicators of those radio conditions. Example indirect indicators include active set size, common pilot channel power, and the number of positive RLC PDU acknowledgments received, to name a few. The embodiments therefore prove particularly advantageous to wireless communication systems based on existing standards that already provide the RNC with such indirect indicators, since no new or additional control signaling need be introduced. Method embodiments herein thus include determining one or more indirect indicators of radio conditions at the UE, and dynamically adapting the size of downlink RLC PDUs in dependence on those one or more indirect indicators.
    • 本文中的实施例通过基站将由无线电网络控制器(RNC)发送的下行链路无线电链路控制(RLC)协议数据单元(PDU)的大小动态地适配到用户设备(UE)。 值得注意的是,RNC使用这些无线电条件的一个或多个间接指示器将下行链路RLC PDU大小与UE处的无线电条件相匹配。 示例性间接指示符包括主动设置大小,公共导频信道功率和接收到的正的RLC PDU确认的数量,仅举几个例子。 因此,这些实施例对于已经向RNC提供这种间接指示符的现有标准的无线通信系统特别有利,因为不需要引入新的或附加的控制信令。 因此,本文的方法实施例包括确定UE处的无线电条件的一个或多个间接指示符,以及根据这些一个或多个间接指示符动态调整下行链路RLC PDU的大小。
    • 9. 发明申请
    • Humeral nail
    • 肱骨钉
    • US20070255283A1
    • 2007-11-01
    • US11823543
    • 2007-06-27
    • Carl EkholmAnders JonssonNils Zander
    • Carl EkholmAnders JonssonNils Zander
    • A61B17/72
    • A61B17/72
    • A humeral nail for the surgical care of fractures of the proximal humerus, with a shaft which has a longitudinal axis and is provided in a proximal portion with at least transverse bores spaced apart in the axial direction. The axis of the three bores is circumferentially offset in respect to each other in planes perpendicular to the longitudinal axis of the shaft. The nail is provided with at least two additional transverse bores in a portion located towards the distal end of the nail, the proximal transverse bore running diagonally to the longitudinal axis and being located in the same plane as is the axis of the additional transverse bores.
    • 用于手术治疗近端肱骨骨折的肱骨钉,其具有轴,所述轴具有纵向轴线,并且在近端部分中设置有沿轴向方向间隔开的至少横向孔。 三个孔的轴线相对于垂直于轴的纵向轴线的平面彼此相对地偏移。 指甲在位于钉的远端的部分中设置有至少两个另外的横向孔,近端横向孔与纵向轴线对角延伸并且位于与附加横向孔的轴线相同的平面中。