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    • 1. 发明授权
    • Access selection method
    • 访问选择方法
    • US08200820B2
    • 2012-06-12
    • US12063597
    • 2005-08-12
    • Mikael PrytzPer MagnussonJohan LundsjöJoachim Sachs
    • Mikael PrytzPer MagnussonJohan LundsjöJoachim Sachs
    • G06F15/173
    • H04W48/18
    • A method of access management in a communication system comprising a terminal, a first access point, a second access point and a network is described. The first access point offers a first access connection to the terminal and the second access point offers a second access connection to the terminal. A first network connection is provided between the network and the first access point and a second network connection is provided between the network and the second access point. Access connection information associated with at least one of the first and second access connections is monitored, and network connection information associated with at least one of the first and second network connections is monitored. An access connection selection decision is based on the monitored access connection information and the monitored network connection information.
    • 描述了包括终端,第一接入点,第二接入点和网络的通信系统中的接入管理方法。 第一接入点提供到终端的第一接入连接,第二接入点提供到终端的第二接入连接。 在网络和第一接入点之间提供第一网络连接,并且在网络和第二接入点之间提供第二网络连接。 监视与第一和第二访问连接中的至少一个相关联的访问连接信息,并且监视与第一和第二网络连接中的至少一个相关联的网络连接信息。 访问连接选择决定基于所监视的访问连接信息和所监视的网络连接信息。
    • 5. 发明授权
    • Lightweight MRRM with radio agnostic access selection in the core network
    • 核心网络中具有无线电不可知接入选择的轻量级MRRM
    • US08155617B2
    • 2012-04-10
    • US12090148
    • 2005-12-29
    • Per MagnussonJoachim SachsJohan LundsjöMikael Prytz
    • Per MagnussonJoachim SachsJohan LundsjöMikael Prytz
    • H04B1/16
    • H04W36/0066H04W36/0083H04W36/28
    • A method and arrangement for making a handover decision in a multi-access communication network is disclosed. A first set of criteria is determined for when a handover between at least two access paths should be performed and a report is sent when at least one criterion of a first set of criteria is fulfilled. A second set of criteria is determined for when a handover between said at least two access paths should be performed and a report is sent when at least one criterion of said second set of criteria is fulfilled. One or more data sessions of at least one user terminal network are determined to be handed over based on the sent reports and a core network anchor and a terminal anchor are directed to execute a handover by re-routing said determined data sessions from one access path to an alternative access path.
    • 公开了一种用于在多址通信网络中进行切换判定的方法和装置。 确定当应当执行至少两个访问路径之间的切换并且当符合第一组标准的至少一个标准时发送报告的第一组标准。 确定当应当执行所述至少两个访问路径之间的切换并且当符合所述第二组标准的至少一个准则时发送报告的第二组标准。 至少一个用户终端网络的一个或多个数据会话被确定为基于所发送的报告被切换,并且核心网络锚点和终端锚点被定向以通过从一个访问路径重新路由所述确定的数据会话来执行切换 到另一个访问路径。
    • 9. 发明授权
    • Methods and arrangements for direct mode communication
    • 直接模式通信的方法和安排
    • US08934892B2
    • 2015-01-13
    • US13703677
    • 2010-06-22
    • Göran SelanderKonstantinos DimouJohan LundsjöMicael MartellGunnar MildhMats Näslund
    • Göran SelanderKonstantinos DimouJohan LundsjöMicael MartellGunnar MildhMats Näslund
    • H04W4/00H04W76/02
    • H04W4/008H04W4/80H04W76/14
    • A method in a first user equipment (UE 1) connectable to a second user equipment (UE 2) via a communication network or via a direct radio communication link, of using a direct radio communication link for communication between the UEs is initiated when one of the UEs receives probe signaling information comprising a first probe token via the communication network. The UEs exchange probe signaling messages including a second and/or the first probe token at least partly according to the probe signaling information, such that one of the UEs can compare the probe tokens, generate a probing report and provide the probing report to the communication network, or to the opposite UE for evaluation in case of a successful comparison and such that a direct radio communication link can be used for communication with UE 2 in response to receiving instructions to use the second direct radio communication link from the entity by which the probing report was evaluated.
    • 当通过通信网络或经由直接无线电通信链路连接到第二用户设备(UE 2)的第一用户设备(UE 1)中使用直接无线电通信链路用于UE之间的通信的方法被启动, UE经由通信网络接收包括第一探测令牌的探测信令信息。 UE至少部分地根据探测信令信息来交换包括第二和/或第一探测令牌的探测信令消息,使得UE中的一个可以比较探测令牌,生成探测报告并向通信提供探测报告 网络或相对的UE进行评估,以便在成功比较的情况下进行评估,并且使得直接无线电通信链路可以用于响应于接收到使用来自所述实体的第二直接无线电通信链路的指令与UE 2通信, 探测报告进行了评估。
    • 10. 发明授权
    • Data transmission over a communications link with variable transmission rates
    • 通过可变传输速率的通信链路进行数据传输
    • US06307867B1
    • 2001-10-23
    • US09078598
    • 1998-05-14
    • Christiaan RoobolMathias JohanssonJohan LundsjöPer Beming
    • Christiaan RoobolMathias JohanssonJohan LundsjöPer Beming
    • H04J322
    • H04J13/00H04J3/1647H04L1/0002H04L1/0007H04L1/1809Y02D50/10
    • An optimal data block size is determined for use in transmitting data at variable rates over a communications link in predetermined time intervals, where each predetermined time interval has the same time duration. Rather than varying data block size according to changes in transmission rates, which adds unnecessary complexity, the data blocks all have the same fixed size, i.e., the same number of data bits in each block. That fixed data block size is determined so that for all of the available data transmission rates, each predetermined time interval is fully occupied with useful information. The fixed data block size is determined based on a maximum frequency at which the transmission rate may change on the communications link and a lowest available transmission rate. Preferably, the fixed size of each data block is limited by predetermined maximum and minimum data block sizes in order to reduce the number of bit errors per data block, maintain a certain data throughput, and limit the amount of overhead bits relative to the number of payload bits for each data block.
    • 确定最佳数据块大小用于以预定时间间隔在通信链路上以可变速率发送数据,其中每个预定时间间隔具有相同的持续时间。 不是根据传输速率的变化来改变数据块大小,这增加了不必要的复杂性,所以数据块都具有相同的固定大小,即每个块中相同数量的数据位。 确定该固定数据块大小,使得对于所有可用数据传输速率,每个预定时间间隔被完全占用有用信息。 基于通信链路上的传输速率可能改变的最大频率和最低可用传输速率来确定固定数据块大小。 优选地,每个数据块的固定大小被预定的最大和最小数据块大小限制,以便减少每个数据块的位错误数量,保持一定的数据吞吐量,并且限制开销比特数量相对于 每个数据块的有效负载比特。