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    • 2. 发明申请
    • METHODS AND APPARATUS FOR INTERFERENCE MANAGEMENT
    • 干扰管理方法与装置
    • WO2013123638A1
    • 2013-08-29
    • PCT/CN2012/071361
    • 2012-02-20
    • RENESAS MOBILE CORPORATIONWANG, HaimingCHEN, TaoQI, YuanPENG, Tao
    • WANG, HaimingCHEN, TaoQI, YuanPENG, Tao
    • H04W16/10
    • H04W16/14H04W72/082
    • Methods and apparatus for managing inter-operator interference. A device experiencing interference conducts device to device communication with another device, associated with another operator, and receives from the other device information relating to inter-operator interference. The device experiencing interference performs analysis using the information received from the other device and determines if it is experiencing strong inter-operator interference. The device reports strong inter-operator interference to a base station and a base station receiving such a report delivers measurement requirements to its user equipments. User equipments conduct measurements according to measurement requirements, and the measurements are analyzed to identify user equipments that are victims of strong inter-operator interference. The base station performs resource allocation to reduce inter-operator interference.
    • 用于管理运营商间干扰的方法和装置。 遇到干扰的设备将设备与另一设备进行设备通信,与另一个操作员相关联,并从其他设备接收与运营商间干扰有关的信息。 遇到干扰的设备使用从其他设备接收到的信息进行分析,并确定其是否经历强大的运营商间干扰。 该设备报告了对基站的强大的运营商间干扰,并且接收到这种报告的基站向其用户设备提供测量要求。 用户设备根据测量要求进行测量,并对测量结果进行分析,以确定受到强大操作员间干扰的受害者的用户设备。 基站执行资源分配以减少运营商间的干扰。
    • 5. 发明申请
    • A PASSENGER CONVEYOR
    • 乘客输送机
    • WO2013037115A1
    • 2013-03-21
    • PCT/CN2011/079667
    • 2011-09-15
    • KONE CORPORATIONFAN, JinquanPLATHIN, AnttiWEI, YuRAUTA, VisaSHI, Yimin
    • FAN, JinquanPLATHIN, AnttiWEI, YuRAUTA, VisaSHI, Yimin
    • B66B29/00B66B29/08B66B25/00
    • B66B23/14B66B23/00B66B27/00B66B29/08
    • A passenger conveyor is disclosed, which comprises an endless conveyor track (2), a power means for moving the conveyor track, an entrance (A) allowing passage to the conveyor track (2), an exit (B) allowing passage away from the conveyor track (2), a balustrade (3) beside the conveyor track (2), and a guide element (4,4 ', 4") or guide elements (4,4 ', 4") which is/are at the entrance (A) and/or at the exit (B) on the floor at proximity of the end of the balustrade (3), forming an elongated lateral guide for an object rolling on the floor to/from the conveyor track, so as to guide the rolling object to/from the conveyor without contacting the balustrade (3); one or more of the guide elements (4,4 ', 4") comprises a source of electromagetic radiation (5,5 ' ), which is adapted to output electromagmetic radiation to the entrance/exit zone of the passenger conveyor. The passenger conveyor can provide plural of escalator functions simultaneously with a simple overall construction.
    • 公开了一种乘客输送机,其包括环形输送机轨道(2),用于移动输送机轨道的动力装置,允许通向输送机轨道(2)的进口(A),允许从 输送机轨道(2),输送轨道(2)旁边的栏杆(3)和引导元件(4,4',4“)或引导元件(4,4',4”) 入口(A)和/或在靠近栏杆(3)的地板的出口处(B)),形成用于在/从输送轨道滚动的物体的细长侧向引导件,以便 在不与栏杆(3)接触的情况下将滚动物体引导到输送机/从输送机引导; 一个或多个引导元件(4,4',4“)包括电磁辐射源(5,5'),其适于将电磁辐射输出到乘客输送机的入口/出口区域。乘客输送机 可以在简单的整体结构的同时提供多个自动扶梯功能。
    • 6. 发明申请
    • HARQ TIMING SCHEME FOR SINGLE-CARRIER UPLINK CONTROL INFORMATION WITH INTER-SITE CARRIER AGGREGATION
    • 用于单载波聚合的单载波上行链路控制信息的HARQ时序方案
    • WO2013029251A1
    • 2013-03-07
    • PCT/CN2011/079168
    • 2011-08-31
    • NOKIA CORPORATIONLEI, HaipengSHU, Kodo
    • LEI, HaipengSHU, Kodo
    • H04W72/02
    • H04W74/04H04L1/1861H04L5/001H04L5/0055H04L5/0073H04W72/12
    • There is a pattern for downlink almost blank sub frames ABSFs for a first network node (e.g., macro eNB) operating in a first component carrier (e.g., PCell). For a user equipment UE operating with the first network node on the first component carrier and also with a second network node on the second component carrier, then either or both of the following are imposed. The UE is scheduled on the first component carrier such that no uplink control information UCI from the UE is scheduled for any uplink subframe in the first component carrier which maps from any of the ABSFs; and the UE is scheduled on the second component carrier such that UCI from the UE is scheduled only for an uplink subframe in the second component carrier which maps from any of the ABSFs. By example, the UCI includes either/or ACKs and NACKs corresponding to data sent downlink to the UE.
    • 对于在第一分量载波(例如PCell)中操作的第一网络节点(例如,宏eNB),存在用于下行链路几乎空白子帧ABSF的模式。 对于在第一分量载波上与第一网络节点操作并且还与第二分量载波上的第二网络节点一起操作的用户设备UE,则施加以下任一或两者。 UE被安排在第一分量载波上,使得对于来自任何ABSF映射的第一分量载波中的任何上行链路子帧调度来自UE的上行链路控制信息UCI; 并且UE被安排在第二分量载波上,使得来自UE的UCI仅针对从任何ABSF映射的第二分量载波中的上行链路子帧进行调度。 例如,UCI包括对应于向UE发送的下行链路的数据的/或ACK和NACK。
    • 8. 发明申请
    • METHOD AND APPARATUS TO DETERMINE A TIMING ADVANCE FOR AN EXTENSION CARRIER
    • 确定延伸载体时序推进的方法和装置
    • WO2013026183A1
    • 2013-02-28
    • PCT/CN2011/001416
    • 2011-08-24
    • RENESAS MOBILE CORPORATIONBAI, WeiHAN, JingWANG, Haiming
    • BAI, WeiHAN, JingWANG, Haiming
    • H04W56/00
    • H04L5/001H04W56/0045H04W74/0866
    • Methods and apparatus are disclosed for calculating timing advance information for an extension earner, such as in an LTE/LTE-A system. In accordance with an embodiment of the invention, an apparatus determines if a timing advance is to be calculated for an extension carrier. The apparatus determines if physical random access channel (PRACH) resources are available on the extension carrier, and determines if a preamble transmission such as a random access channel (RACH) transmission is triggered on the extension carrier. In an instance in which RACH is triggered on the extension carrier, the apparatus causes the preamble to be transmitted on a respective PRACH resource. Furthermore, in an instance in which RACH is not triggered on the extension earner, the apparatus receives a scheduling grant for a physical uplink shared channel (PUSCH) on a respective PRACH resource.
    • 公开了用于计算例如LTE / LTE-A系统中的扩展接收机的定时提前信息的方法和装置。 根据本发明的实施例,一种装置确定是否对扩展载体计算定时提前。 该设备确定物理随机接入信道(PRACH)资源在扩展载波上是否可用,并且确定在扩展载波上是否触发诸如随机接入信道(RACH)传输的前同步码传输。 在扩展载波上触发RACH的情况下,该装置使得前导码在相应的PRACH资源上被发送。 此外,在扩展接收机上不触发RACH的情况下,该装置在相应的PRACH资源上接收物理上行链路共享信道(PUSCH)的调度许可。