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    • 3. 发明申请
    • METHODS AND RADIO ACCESS NODE FOR DETERMINING A CELL STATE
    • 用于确定细胞状态的方法和无线电访问节点
    • WO2013191600A1
    • 2013-12-27
    • PCT/SE2012/050677
    • 2012-06-19
    • Telefonaktiebolaget L M Ericsson (publ)SANDBERG, PontusÖSTRUP, Peter
    • SANDBERG, PontusÖSTRUP, Peter
    • H04W28/04H04L12/26
    • H04W24/06H04W24/04H04W24/08H04W52/0212H04W68/00H04W68/005H04W88/08Y02D70/00Y02D70/1222Y02D70/1242Y02D70/1262
    • The present invention relates to a method in a radio access node to perform a sleepy cell test, i.e., for determining a cell state for a cell served by the radio access node. In a first step, fulfilment of a predetermined triggering condition is detected (310) in a radio access node. Following detection of the fulfilled triggering condition, one or more user equipment to be paged is determined (313). The radio access node initiates (314) a page response timer period and performs paging (315) of the user equipment until there is time out of the timer period or a page response is received (316) from the one or more user equipment. The paging responses received whilst performing the step of paging the user equipment is assessed (318). A cell state alert message reflecting the result from the paging is generated (320) and sent to a receiving entity (311). The present invention also relates to a radio access node, configured to carry out the sleepy cell test and a method in a core network entity for determining a cell state for a cell handled by a radio access node. For the method in the core network node, a sleepy cell assumption is formed in an initial step of the test. Following conclusion of the sleepy cell test, the sleepy cell assumption is confirmed or rejected.
    • 本发明涉及无线接入节点中执行睡眠小区测试的方法,即用于确定由无线接入节点服务的小区的小区状态。 在第一步骤中,在无线接入节点中检测(310)预定的触发条件的实现。 在检测到满足的触发条件之后,确定要被寻呼的一个或多个用户设备(313)。 无线电接入节点启动(314)寻呼响应定时器周期并且执行用户设备的寻呼(315),直到从该一个或多个用户设备接收到定时周期或超出页面响应(316)为止。 评估在执行寻呼用户设备的步骤期间接收到的寻呼响应(318)。 产生反映来自寻呼的结果的小区状态警报消息(320)并发送给接收实体(311)。 本发明还涉及一种无线接入节点,被配置为执行所述睡眠小区测试,以及核心网络实体中用于确定由无线接入节点处理的小区的小区状态的方法。 对于核心网络节点中的方法,在测试的初始步骤中形成睡眠单元假设。 睡眠细胞测试结束后,睡眠细胞假设被确认或拒绝。
    • 6. 发明公开
    • TELECOMMUNICATIONS SYSTEM AND METHOD
    • 电信系统和方法
    • EP2351421A1
    • 2011-08-03
    • EP08877320.5
    • 2008-10-08
    • Telefonaktiebolaget L M Ericsson (publ)
    • WESTROOS, AndersHILLSTRÖM, FredrikÖSTRUP, PeterJOHANSSON, StefanMÜLLER, Walter
    • H04W36/16
    • H04W36/24H04W24/04H04W36/16H04W76/18
    • The present invention overcomes the problem of S1 interface failure by redirecting user equipments to another radio basestation, or another RAT. This redirecting may be on a UE-by-UE basis, i.e. when a connection request is received, redirecting that UE, or may involve redirecting all UEs in a cell by broadcasting modified system information. The redirecting may be such that future traffic load, for example as caused by UEs performing tracking area updates, is minimized, by instructing UEs to redirect after a randomized period of time, or by locking the cell after a randomized period of time, for example. In yet further embodiments of the invention, the cell may be locked after a certain number of connection requests have been received. In this way, particularly busy cells can be locked sooner than would otherwise be the case.
    • 本发明通过将用户设备重定向到另一无线电基站或另一RAT来克服S1接口故障的问题。 该重定向可以基于UE逐个UE,即,当接收到连接请求时,重定向该UE,或者可以涉及通过广播经修改的系统信息来重定向小区中的所有UE。 重定向可以是这样的,例如通过指示UE在随机时间段之后重定向,或者通过在随机时间段之后锁定小区,例如由执行跟踪区域更新的UE引起的未来通信量负载被最小化 。 在本发明的又一些实施例中,在接收到一定数量的连接请求之后,可以锁定小区。 通过这种方式,特别忙碌的细胞可以比其他情况更早被锁定。
    • 10. 发明公开
    • METHOD AND APPARATUS FOR CAPACITY DRIVEN INTRA-CELL HANDOVER IN A CELLULAR TELEPHONE NETWORK
    • 受控容量的方法和装置迄今所取得的一个小区在蜂窝电话网络
    • EP1005765A1
    • 2000-06-07
    • EP98940734.1
    • 1998-08-18
    • Telefonaktiebolaget L M Ericsson (Publ)
    • ÖSTRUP, PeterPALM, H kanWESTROOS, Anders
    • H04Q7/30
    • H04W36/20H04W36/26
    • Existing communication connections in a cellular telephone base station can become allocated to communication equipment in a less than optimal fashion. To address this problem a detector (200) identifies (300) when an existing communication connection routed through the base station is terminated. The detector informs a processor (210) which calculates a channel allocation for the remaining communication connections currently routed through the base station which optimizes channel utilization. The optimal channel allocation is then implemented through intracell handovers (330, 350 and 370). The optimal channel allocation is based on assigning an existing communication connection having a lower channel rate (340 and 360) requirement than is available on the communication channel currently carrying the existing communication connection to a communication channel having a lower channel rate capacity or assigning an existing communication connection from a less restrictive communication channel to a more restrictive communication channel (320) having the same or lower channel rate capacity as the current communication channel.
    • 在蜂窝式电话基站现有的通信连接可以成为分配给通信设备在不是最佳的方式一以下。 为了解决这个问题,一个检测器标识当通过基站路由的现有通信连接被终止。 该检测器INFORMS一个处理器,其计算用于当前通过基站,其优化的信道利用率路由剩余通信连接的信道分配。 最佳的信道分配,然后通过小区内切换执行。 最佳信道分配是基于分配具有较低信道速率要求比可用目前携带到具有较低信道速率能力或分配从以下现有的通信连接的通信信道的现有通信连接的通信信道上的现有的通信连接 限制性的通信信道具有相同或较低速率的信道容量作为当前通信信道的更严格的通信信道。