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    • 5. 发明申请
    • Link Layer Control Protocol Implementation
    • 链路层控制协议实现
    • US20100216471A1
    • 2010-08-26
    • US12516699
    • 2007-12-19
    • Michael MeyerJanne PeisaMats SagforsJohan TorsnerAndras Racz
    • Michael MeyerJanne PeisaMats SagforsJohan TorsnerAndras Racz
    • H04W36/00
    • H04W36/26H04W36/02
    • A radio base station suitable for performing a handover operation for a LTE-variant of a radio access network comprises a transceiver and a status report requester. The transceiver is configured to facilitate wireless transmission between the radio base station and a wireless terminal over an air interface, including transmission of a radio link bearer for the connection over a downlink from the radio base station to the wireless terminal. The status report requester is configured to determine, according to one or more pre-defined criteria, whether to request from the wireless terminal a status report for a radio bearer prior to the radio base station transferring user data for the connection to another radio base station in conjunction with a handover.
    • 适合于对无线电接入网络的LTE变型进行切换操作的无线电基站包括收发机和状态报告请求者。 收发器被配置为促进无线基站和无线终端之间通过空中接口的无线传输,包括通过无线电基站到无线终端的下行链路的连接的无线电链路承载的传输。 状态报告请求者被配置为根据一个或多个预定义的准则来确定在无线电基站传送用于连接到另一个无线电基站的用户数据之前是否从无线终端请求无线承载的状态报告 结合切换。
    • 7. 发明授权
    • Method and system for processing a data unit
    • 用于处理数据单元的方法和系统
    • US07876781B2
    • 2011-01-25
    • US10480953
    • 2002-05-22
    • Michael MeyerReiner LudwigJoachim SachsMats Sagfors
    • Michael MeyerReiner LudwigJoachim SachsMats Sagfors
    • H04J3/16
    • H04L29/06H04L69/32H04L69/324
    • A method of processing a data unit of a first protocol layer for transmission in a data unit based communication system is described, comprising the steps of passing to a second protocol layer a given data unit of said first protocol layer that is to be transmitted, determining a numeric value of a numerically quantifiable parameter associated with said given data unit of said first protocol layer, embedding said given data unit of said first protocol layer into one or more data units of said second protocol layer, performing transmission control for said one or more data units of said second protocol layer in accordance with said numeric value of said numerically quantifiable parameter.
    • 描述了一种在基于数据单元的通信系统中处理用于传输的第一协议层的数据单元的方法,包括以下步骤:将要发送的所述第一协议层的给定数据单元传递给第二协议层,确定 与所述第一协议层的所述给定数据单元相关联的可数量化参数的数值,将所述第一协议层的所述给定数据单元嵌入所述第二协议层的一个或多个数据单元中,对所述一个或多个 根据所述数字可量化参数的所述数值,所述第二协议层的数据单元。
    • 9. 发明申请
    • Selecting Channel Bandwidth and Data Error Target Dynamically Based On a Determined Transmission Need
    • 基于确定的传输需求动态选择信道带宽和数据错误目标
    • US20090052322A1
    • 2009-02-26
    • US11884730
    • 2005-02-21
    • Arne SimonssonJonas PetterssonMarten EricssonMichael MeyerJanne Peisa
    • Arne SimonssonJonas PetterssonMarten EricssonMichael MeyerJanne Peisa
    • H04L12/24
    • H04W28/20
    • In a mobile communication system having channels with different bandwidths, a channel bandwidth can be dynamically selected for transmitting data over a connection between a radio access network and a mobile station. According to the invention, a channel bandwidth and also a target for a data error rate for the transmission is selected based on a determined transmission need, i.e. a determined characteristics of the data to be transmitted and on a determined load of a communication resource, e.g. channel power and/or total carrier power used in a cell. By making it possible to dynamically select a data error rate, a connection can, by increasing the data error rate and consequently decreasing the channel power, carry on using a certain channel bandwidth even if at a first instance a load threshold level is achieved for the channel power or the total power used in the cell. Thereby, the capacity of the system can be increased, while at the same time the throughput over the connection is increased.
    • 在具有不同带宽的信道的移动通信系统中,可以通过无线接入网与移动台之间的连接来动态地选择信道带宽来发送数据。 根据本发明,基于所确定的传输需要,即要确定的要发送的数据的特性,以及在确定的通信资源的负载,例如,根据本发明,选择信道带宽以及用于传输的数据错误率的目标。 信道功率和/或小区中使用的总载波功率。 通过使动态地选择数据错误率成为可能,连接可以通过增加数据错误率并因此降低信道功率来继续使用特定的信道带宽,即使在一个实例中实现负载阈值水平, 通道功率或单元中使用的总功率。 因此,可以增加系统的容量,同时增加连接上的吞吐量。