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    • 1. 发明申请
    • METHOD, ARRANGEMENT AND COMPUTER PROGRAM FOR INCREASING DATA THROUGHPUT BETWEEN A USER EQUIPMENT AND A NETWORK NODE OF A COMMUNICATION NETWORK
    • 方法,安排和计算机程序,用于增加用户设备和通信网络的网络节点之间的数据通量
    • WO2016195546A1
    • 2016-12-08
    • PCT/SE2015/050621
    • 2015-05-29
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • LU, ChenguangCEDERHOLM, DanielWIKSTRÖM, GustavSÖDER, JohanPAPPA, Ioanna
    • H04W28/02H04W28/08
    • H04W28/0247H04W28/08
    • Disclosed is a method performed by a communication network (10) for increasing data throughput between a User Equipment, UE (60) and a network node (30) of the communication network, wherein the UE (60) is wirelessly connected to a first radio access node (24), and the UE also has wireless access to a second, neighboring radio access node (26, 28). The first radio access node (24) is connected to the network node (30) via a first backhaul link (44) having a first link capacity and the second radio access node (26, 28) is connected to the network node (30) via a second backhaul link (46, 48) having a second link capacity. The method comprises obtaining information of data throughput of the first backhaul link (44), obtaining information of data throughput of the second backhaul link (46), and triggering transmission of data between the UE and the network node via the second radio access node as well as via the first radio access node, based on the data throughput of the first backhaul link, the data throughput of the second backhaul link, the first link capacity and the second link capacity.
    • 公开了一种由通信网络(10)执行的用于增加用户设备,UE(60)和通信网络的网络节点(30)之间的数据吞吐量的方法,其中UE(60)无线连接到第一无线电 接入节点(24),并且所述UE还具有到第二相邻无线接入节点(26,28)的无线接入。 第一无线电接入节点(24)经由具有第一链路容量的第一回程链路(44)连接到网络节点(30),并且第二无线接入节点(26,28)连接到网络节点(30) 经由具有第二链路容量的第二回程链路(46,48)。 该方法包括获得第一回程链路(44)的数据吞吐量信息,获得第二回程链路(46)的数据吞吐量信息,以及经由第二无线接入节点触发UE和网络节点之间的数据传输,作为 以及经由第一无线接入节点,基于第一回程链路的数据吞吐量,第二回程链路的数据吞吐量,第一链路容量和第二链路容量。
    • 6. 发明申请
    • MEASUREMENT REPORTS
    • 测量报告
    • WO2016163936A1
    • 2016-10-13
    • PCT/SE2016/050286
    • 2016-04-05
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • TAN BERGSTRÖM, MattiasSÖDER, JohanWIEMANN, Henning
    • H04W24/10
    • H04W24/10H04B17/309H04W84/042H04W84/12H04W88/02H04W88/08
    • According to an aspect, there is provided a method of operating a terminal device in a first communication network, wherein the first communication network is operated by a first network operator, the method comprising receiving (201) one or more signals; determining (203), for each of the one or more received signals, whether the signal was received from a network node that is considered by the first network operator to be a priority node or from a network node that is considered by the first network operator to be a non-priority node; forming (205) a measurement report comprising measurements of one or more of the received signals, the measurement report being formed by prioritising the inclusion of measurements of signals received from priority nodes over measurements of signals received from non-priority nodes; and sending (207) the measurement report to a network node in the first communication network.
    • 根据一方面,提供了一种在第一通信网络中操作终端设备的方法,其中所述第一通信网络由第一网络运营商操作,所述方法包括:接收(201)一个或多个信号; 对于所述一个或多个接收信号中的每一个确定(203)是否从所述第一网络运营商认为是优先级节点的网络节点接收到所述信号,或者从所述第一网络运营商所考虑的网络节点 成为非优先级节点; 形成(205)包括所述接收信号中的一个或多个的测量的测量报告,所述测量报告通过将从优先级节点接收的信号的测量值包括在从非优先级节点接收的信号的测量结果上进行优先级化而形成; 并将所述测量报告发送(207)到所述第一通信网络中的网络节点。
    • 7. 发明申请
    • RECEIVING NODE, TRANSMITTING NODE, AND METHODS THEREIN FOR HANDLING CHANNEL ACCESS
    • 接收节点,发送节点及其处理通道的方法
    • WO2016130056A1
    • 2016-08-18
    • PCT/SE2015/050154
    • 2015-02-10
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • WIKSTRÖM, GustavSÖDER, JohanWANG, Yu
    • H04W74/08H04W48/02H04W84/12
    • H04W48/02H04W48/16H04W74/0808H04W84/12
    • A method performed by a transmitting node for handling a channel access for transmitting data to a receiving node is provided. The transmitting node and the receiving node operate in a wireless communications network. The transmitting node obtains (503) a defer list. The defer list comprises nodes causing Signal to Interference Ratio, SIR, below a threshold at the receiver node. The defer list is based on a first defer list received from and created by the receiving node. The transmitting node senses (504) a wireless channel in the wireless communications network. When the transmitting node intends to transmit data to the receiving node, the transmitting node defers (505) channel access to the sensed wireless channel for the data transmission when one or more conditions are fulfilled. The one or more conditions comprise at least that one or more nodes are sensed as communicating and are on the defer list.
    • 提供了一种由发送节点执行的用于处理用于向接收节点发送数据的信道接入的方法。 发射节点和接收节点在无线通信网络中工作。 发送节点获得(503)延迟列表。 延迟列表包括在接收器节点处低于阈值的信号干扰比SIR的节点。 延迟列表基于从接收节点接收和创建的第一延迟列表。 发射节点感知(504)无线通信网络中的无线信道。 当发送节点意图向接收节点发送数据时,当满足一个或多个条件时,发送节点延迟(505)信道访问所感测的无线信道用于数据传输。 一个或多个条件包括至少该一个或多个节点被感测为通信,并且在延迟列表上。
    • 8. 发明申请
    • WIRELESS ACCESS POINT NODES, A MANAGEMENT NODE AND METHODS THEREIN CONTROLLING RADIO RESOURCE USAGE
    • 无线接入点,管理节点及其控制无线资源使用的方法
    • WO2016099349A1
    • 2016-06-23
    • PCT/SE2014/051510
    • 2014-12-16
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • MESTANOV, FilipSÖDER, JohanWANG, YuWILHELMSSON, Leif
    • H04W74/08
    • H04W72/10H04L41/0816H04L41/5003H04L47/805H04W28/0268H04W28/16H04W74/002H04W74/0816H04W88/08
    • A first wireless Access Point (AP) node 102 and a method therein for controlling radio resource usage. The first wireless AP node is arranged to have a first Radio Frequency (RF) coverage area 102a that is at least partly overlapping with a second RF coverage area 104a of a second wireless AP node 104. The first and second wireless AP nodes are arranged to operate on the same RF channel. The method comprises configuring a first priority level of the first wireless AP node in relation to a second priority level of the second wireless AP node, which first and second priority levels are priority levels for accessing the RF channel. The method further comprises transmitting, to a wireless device 108 associated with the first wireless AP node, data via the RF channel in dependence of the first priority level. Thereby, the radio resource usage is controlled. According to some embodiments, the priority level is set based on negotiations between the first and second wireless AP nodes. According to other embodiments, the priority level is set based on communication between the first wireless AP node and a management node 110.
    • 第一无线接入点(AP)节点102及其中的控制无线资源使用的方法。 第一无线AP节点被布置成具有与第二无线AP节点104的第二RF覆盖区域104a至少部分重叠的第一射频(RF)覆盖区域102a。第一和第二无线AP节点被布置为 在相同的RF通道上工作。 所述方法包括:相对于所述第二无线AP节点的第二优先级配置所述第一无线AP节点的第一优先级,所述第一和第二优先级是用于访问所述RF信道的优先级。 该方法还包括根据第一优先级级经由RF信道向与第一无线AP节点相关联的无线设备108发送数据。 由此,控制无线资源的使用。 根据一些实施例,基于第一和第二无线AP节点之间的协商设置优先级。 根据其他实施例,基于第一无线AP节点和管理节点110之间的通信来设置优先级。
    • 10. 发明申请
    • A FIRST NODE AND A METHOD THEREIN
    • 第一个节点及其方法
    • WO2016122363A1
    • 2016-08-04
    • PCT/SE2015/050106
    • 2015-01-30
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
    • WIKSTRÖM, GustavWANG, YuSÖDER, Johan
    • H04W74/08
    • H04W74/0808H04W72/048H04W72/082H04W84/12
    • A first node 402,406 and a method therein for controlling transmission of a first signal. The first node is operating in a Basic Service Set (BSS) 402a comprised in a Wireless Local Area Network (WLAN) 400. The first node detects a second signal transmitted from a second node 402,404,408,410 operating in the WLAN 400. Further, the first node compares a signal strength of the second signal with a threshold value for the second node, which threshold value is determined based on the node type of the second node. Furthermore the first node transmits the first signal when the signal strength of the second signal is below the threshold value, and defers from transmitting the first signal when the signal strength of the second signal is above the threshold value. Thereby the transmission of the first signal is controlled.
    • 第一节点402,406及其中用于控制第一信号的传输的方法。 第一节点在包括在无线局域网(WLAN)400中的基本服务集(BSS)402a中操作。第一节点检测从在WLAN 400中操作的第二节点402,404,408,410发送的第二信号。此外,第一节点 将第二信号的信号强度与第二节点的阈值进行比较,该阈值基于第二节点的节点类型来确定。 此外,当第二信号的信号强度低于阈值时,第一节点发送第一信号,并且当第二信号的信号强度高于阈值时,第一节点停止发送第一信号。 从而控制第一信号的传输。