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    • 3. 发明申请
    • CONTROL CHANNEL TRANSMISSION FOR PAGING MESSAGE COVERAGE ENHANCEMENT
    • 用于寻呼消息覆盖增强的控制信道传输
    • WO2015184642A1
    • 2015-12-10
    • PCT/CN2014/079371
    • 2014-06-06
    • NOKIA SOLUTIONS AND NETWORKS OYDU, LeiRATASUK, RapeepatZHANG, Yanji
    • DU, LeiRATASUK, RapeepatZHANG, Yanji
    • H04W72/04
    • H04W68/02H04L5/0053H04W8/02H04W68/005H04W72/042H04W88/02H04W88/08
    • Various communication systems may benefit from the proper use of control channel resources. For example, certain communication systems associated with the long term evolution of the third generation partnership project may benefit from physical downlink control channel transmission improvement for paging message coverage enhancement. A method can include obtaining a coverage enhancement paging parameter at a user equipment. The method can also include calculating, by the user equipment, a paging frame or paging occasion according to the paging parameter. In another example, a method can include receiving, at a user equipment, a coverage enhancement paging radio network temporary identifier for use in coverage enhancement mode. The method can also include decoding a physical downlink control channel based on the coverage enhancement paging radio network temporary identifier.
    • 各种通信系统可以受益于正确使用控制信道资源。 例如,与第三代合作伙伴项目的长期演进相关联的某些通信系统可以受益于用于寻呼消息覆盖增强的物理下行链路控制信道传输改进。 一种方法可以包括在用户设备处获得覆盖增强寻呼参数。 该方法还可以包括根据寻呼参数由用户设备计算寻呼帧或寻呼时机。 在另一示例中,一种方法可以包括在用户设备处接收覆盖增强寻呼无线电网络临时标识符以用于覆盖增强模式。 该方法还可以包括基于覆盖增强寻呼无线电网络临时标识符来解码物理下行链路控制信道。
    • 6. 发明申请
    • CONTROL CHANNEL DESIGN AND USE FOR NARROW BAND COMMUNICATION
    • 窄带通信的控制信道设计和使用
    • WO2017120742A1
    • 2017-07-20
    • PCT/CN2016/070596
    • 2016-01-11
    • NOKIA SOLUTIONS AND NETWORKS OYRATASUK, RapeepatJIN, ShiZHANG, Yuantao
    • RATASUK, RapeepatJIN, ShiZHANG, Yuantao
    • H04W72/04
    • H04L5/0053H04L5/0007H04L5/0037H04W72/0406
    • REGs are mapped to REs for UEs to all available OFDM symbols for a subframe, which includes a time-frequency resource space comprising the OFDM symbols in time and subcarriers in frequency. The mapping is performed to form a portion of a control channel and the available symbols are OFDM symbols not used for another control channel. The REs are populated in the portion of the control channel with control information for the UEs using corresponding ones of the REGs. The mapping and the populating are performed to form a complete control channel over one or more subframes, wherein the complete control channel can span a single subframe or multiple subframes. The one or more subframes with the complete control channel are transmitted. A UE will blind decode received subframe (s) in order to determine the control information, which is to be subsequently used by the UE to receive or transmit data.
    • REGs被映射到用于UE的RE以用于子帧的所有可用OFDM符号,其包括时间上包括OFDM符号和频率上子载波的时间 - 频率资源空间。 执行映射以形成控制信道的一部分,并且可用符号是不用于另一控制信道的OFDM符号。 使用对应的一些REG,RE在控制信道的部分中填充有用于UE的控制信息。 执行映射和填充以在一个或多个子帧上形成完整的控制信道,其中完整的控制信道可以跨越单个子帧或多个子帧。 传输具有完整控制信道的一个或多个子帧。 UE将对接收到的子帧进行盲解码以便确定将随后由UE用来接收或发送数据的控制信息。
    • 9. 发明申请
    • HIERARCHICAL NETWORK AND INTERFERENCE MANAGEMENT
    • 分层网络和干扰管理
    • WO2013135408A1
    • 2013-09-19
    • PCT/EP2013/051218
    • 2013-01-23
    • NOKIA SIEMENS NETWORKS OYGHOSH, AmitabhaMANGALVEDHE, NitinMONDAL, BishwarupRATASUK, Rapeepat
    • GHOSH, AmitabhaMANGALVEDHE, NitinMONDAL, BishwarupRATASUK, Rapeepat
    • H04W24/02
    • H04W24/02
    • The specification and drawings present a new method, apparatus and software related product (e.g., a computer readable memory) for network management through a hierarchical architecture with a control functionality of a network server (e.g., C-SON) in relationship to clusters comprising eNBs (access points), and for implementing coordinated multi-point (CoMP) transmission and reception in conjunction with inter-cell interference coordination (ICIC) in wireless networks such as LTE wireless networks. In particular, embodiments of the invention describe control and coordination mechanisms among the network elements for different network architectures and use-case scenarios. Such mechanisms may be managed by a centralized self-organizing network controller such as C-SON and hierarchically via localized controllers (such as cluster coordinators) residing in macro eNBs depending on system architectural constraints and network state. A fault-tolerant mechanism then may be defined to recover from failure of controlling sub-elements so that the network remains stable at all times.
    • 说明书和附图提出了一种用于网络管理的新方法,装置和软件相关产品(例如,计算机可读存储器),其通过具有与包括eNB的集群相关联的网络服务器(例如,C-SON)的控制功能的分级架构 (接入点),并且用于在诸如LTE无线网络的无线网络中结合小区间干扰协调(ICIC)来实现协调的多点(CoMP)发送和接收。 特别地,本发明的实施例描述了用于不同网络架构和用例场景的网络元件之间的控制和协调机制。 这样的机制可以由诸如C-SON的集中式自组织网络控制器管理,并且根据系统架构约束和网络状态分层地经由驻留在宏eNB中的集中式控制器(例如集群协调器)进行管理。 然后可以定义容错机制以从控制子元件的故障中恢复,使得网络始终保持稳定。