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    • 4. 发明申请
    • TECHNIQUE FOR HANDLING RULES FOR OPERATING A SELF-ORGANIZING NETWORK
    • 用于操作自组织网络的操作规则的技术
    • WO2016026509A1
    • 2016-02-25
    • PCT/EP2014/067564
    • 2014-08-18
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • VADERNA, PeterRÁCZ, AndrásREIDER, Norbert
    • H04W24/02H04L12/24H04W24/08
    • H04W24/02H04L41/0816H04L41/0823H04L41/16H04L41/5009H04L41/5025H04L43/08H04W24/08
    • A technique for handling at least one rule for operating a self-organizing network is provided. As to one method aspect of the technique, a plurality of measurement sets (602) are measured. Each measurement set includes measurement values specifying at least one first key performance indicator (604) of the self-organization network and a second key performance indicator (606) of the self-organizing network. The second key performance indicator is different from the first key performance indicator. A relation (700) is determined between the at least one first key performance indicator and the second key performance indicator based on the measurement sets. The at least one rule (610) for operating the self-organizing network is derived based on the determined relation. The relation between the at least one first KPI and the second KPI may be determined automatically by means of a machine learning process.
    • 提供了一种用于处理至少一个用于操作自组织网络的规则的技术。 关于该技术的一个方法方面,测量多个测量组(602)。 每个测量集包括指定自组织网络的至少一个第一关键性能指标(604)和自组织网络的第二关键性能指标(606)的测量值。 第二个关键性能指标与第一个关键性能指标不同。 基于所述测量集,在所述至少一个第一关键性能指示符和所述第二关键性能指标之间确定关系(700)。 基于确定的关系导出用于操作自组织网络的至少一个规则(610)。 可以通过机器学习过程自动确定至少一个第一KPI和第二KPI之间的关系。
    • 6. 发明申请
    • CONGESTION CONTROL IN A TRANSPORT NETWORK
    • 运输网络中的约束控制
    • WO2015053664A1
    • 2015-04-16
    • PCT/SE2013/051172
    • 2013-10-07
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • NÁDAS, SzilveszterRÁCZ, SándorREIDER, Norbert
    • H04W28/02H04W80/02H04W80/06H04L12/801H04W92/12
    • H04W28/0247H04W28/0273H04W88/08H04W88/12
    • A congestion control method of a cellular communication system is disclosed. A first protocol data unit having a first sequence number is transmitted from a radio network controller to a base station via a transport network. The base station detects a congestion situation of the transport network by detecting loss of the first protocol data unit during transmission over the transport network.In response to detecting the congestion situation,a notification message indicative of the detected congestion situation is transmitted from the base station to the radio network controller via the interface of the transport network. In response to receiving the notification message, the radio link controller of the radio network controller creates a second protocol data unit, which is empty to indicate the congestion situation to a TCP of the wireless communication device. The second protocol data unit is transmitted from the radio network controller to the base station via the interface of the transport network and from the base station to the wireless communication device via an air interface of the radio link. When the second protocol data unit is received by the wireless communication device, detection of the congestion situation is triggered by the TCP of the wireless communication device based on decoding of the second protocol data unit, and a congestion avoidance mode of the TCP is entered. Corresponding method and arrangement of a radio network controller are also disclosed as well as corresponding computer program product, radio network controller, and cellular communication system.
    • 公开了一种蜂窝通信系统的拥塞控制方法。 具有第一序列号的第一协议数据单元经由传输网络从无线电网络控制器发送到基站。 基站通过在传输网络传输过程中检测到第一协议数据单元的丢失来检测传输网络的拥塞情况。响应于检测到拥塞情况,从基站发送指示检测到的拥塞情况的通知消息 经由传输网络的接口发送到无线电网络控制器。 响应于接收到通知消息,无线电网络控制器的无线电链路控制器创建第二协议数据单元,其为空以指示无线通信设备的TCP的拥塞情况。 第二协议数据单元经由无线电链路的空中接口从无线电网络控制器经由传输网络的接口和从基站到无线通信设备从无线电网络控制器发送到基站。 当第二协议数据单元被无线通信设备接收时,基于第二协议数据单元的解码,通过无线通信设备的TCP触发拥塞状况的检测,并且输入TCP的拥塞避免模式。 还公开了无线电网络控制器的相应方法和布置,以及对应的计算机程序产品,无线电网络控制器和蜂窝通信系统。
    • 9. 发明申请
    • SRVCC HANDOVER DECISION BASED ON STATISTICAL DATA ON TERMINAL BEHAVIOR
    • 基于终端行为统计数据的SRVCC切换决策
    • WO2016101972A1
    • 2016-06-30
    • PCT/EP2014/078988
    • 2014-12-22
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • KOVÁCS, BenedekMAGYAR, GáborRÁCZ, AndrásREIDER, NorbertVADERNA, Peter
    • H04W36/00H04W8/18H04L29/06
    • H04W36/0022H04L65/1016H04W8/18
    • A technique for optimizing, based on information from an analytics engine, a decision concerning an SRVCC handover of a UE is disclosed. In a first method aspect, the method is performed in an IMS core and comprises the steps of inquiring, from the analytics engine, a recommendation on whether the PS domain or the CS domain is to be the access domain for an originating side for the UE, receiving the recommendation comprising a probability per UE that an SRVCC handover will occur after initiation of a voice call in VoLTE, and selecting, based on the probability, one of the PS domain and CS domain as the access domain for the originating side for the UE. In a second method aspect, the analytics engine has stored, per UE, a probability that an SRVCC handover will occur after initiation of a UE voice call in VoLTE. The engine transmits the recommendation comprising the probability per UE.
    • 公开了一种基于来自分析引擎的信息来优化关于UE的SRVCC切换的决策的技术。 在第一方法方面,该方法在IMS核心中执行,并且包括以下步骤:从分析引擎查询关于PS域或CS域是否为用于UE的始发方的接入域的建议 接收包括每个UE的概率的建议,即在VoLTE中发起语音呼叫之后将发生SRVCC切换,并且基于概率,将PS域和CS域中的一个作为源端的接入域选择为 UE。 在第二方法方面,分析引擎已经在每个UE中存储在VoLTE中启动UE语音呼叫之后SRVCC切换将发生的概率。 引擎发送包括每个UE的概率的建议。