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    • 41. 发明申请
    • METHOD AND SYSTEM FOR JOINT PARAMETER OPTIMIZATION FOR MACRO AND FEMTO CELLS
    • 用于宏观和有限元细胞的联合参数优化的方法和系统
    • WO2013126845A1
    • 2013-08-29
    • PCT/US2013/027517
    • 2013-02-22
    • QUALCOMM INCORPORATED
    • SINGH, DamanjitTINNAKORNSRISUPHAP, PeerapolYAVUZ, MehmetCHEVALLIER, Christophe
    • H04W36/00H04W24/02H04W48/20H04W84/04
    • H04W16/32H04W48/02H04W48/12H04W48/20H04W60/00H04W84/045
    • Disclosed are systems and methods for joint parameter optimization for collocated macrocells and femtocells in a wireless communication network. In one aspect, the method comprises: collecting one or more performance parameters from the one or more collocated macrocells and femtocells, detecting frequent cell reselections or frequent cell handovers by mobile devices between the one or more collocated macrocells and femtocells, optimizing one or more cell reselection and handover parameters for the one or more collocated macrocells and femtocells based on the performance parameters, and overwriting one or more corresponding parameters of the collocated macrocells and femtocells with the one or more optimized cell reselection and handover parameters in order to reduce frequent cell reselections or frequent cell handovers by mobile devices between the one or more collocated macrocells and femtocells in a wireless communication network.
    • 公开了用于无线通信网络中的并置宏小区和毫微微小区的联合参数优化的系统和方法。 一方面,该方法包括:从一个或多个并置的宏小区和毫微微小区收集一个或多个性能参数,检测在一个或多个并置的宏小区和毫微微小区之间的移动设备的频繁小区重新选择或频繁的小区切换,优化一个或多个小区 基于性能参数对一个或多个并置的宏小区和毫微微小区进行重选和切换参数,并且利用所述一个或多个优化的小区重选和切换参数重写并置的宏小区和毫微微小区的一个或多个相应参数,以便减少频繁的小区重选 或者在无线通信网络中的一个或多个并置宏小区和毫微微小区之间的移动设备进行频繁的小区切换。
    • 42. 发明申请
    • MANAGING ACCESS TERMINAL HANDOVER IN VIEW OF ACCESS POINT PHYSICAL LAYER IDENTIFIER CONFUSION
    • 根据接入点物理层标识符混淆管理接入终端切换
    • WO2013082547A2
    • 2013-06-06
    • PCT/US2012/067469
    • 2012-11-30
    • QUALCOMM INCORPORATED
    • SINGH, DamanjitTINNAKORNSRISUPHAP, PeerapolTOKGOZ, YelizYAVUZ, Mehmet
    • H04W36/00
    • H04W36/0077H04W8/26H04W36/0072
    • Confusion associated with a physical layer identifier is detected and action taken to address this confusion. In some aspects, confusion detection involves determining whether signals such as beacons or pilots that are associated with the same physical layer identifier are also associated with different timing (e.g., different observed time difference (OTD) values). In some aspects, confusion detection involves determining whether an inordinate number of handover failures is associated with a particular physical layer identifier. In some aspects, the action taken upon detecting physical layer identifier confusion involves ensuring that an access terminal is not handed over to an access point that uses that physical layer identifier. In some aspects, the action taken upon detecting physical layer identifier confusion involves resolving the confusion.
    • 检测到与物理层标识符相关的混乱并采取措施解决此混淆。 在一些方面,混淆检测涉及确定与同一物理层标识符相关联的诸如信标或导频的信号是否也与不同定时(例如,不同观测时间差(OTD)值)相关联。 在一些方面,混淆检测涉及确定过多次的切换失败是否与特定的物理层标识符相关联。 在一些方面,在检测物理层标识符混淆时采取的动作涉及确保接入终端不被切换到使用该物理层标识符的接入点。 在某些方面,检测到物理层标识符混淆时采取的措施涉及解决混淆问题。
    • 43. 发明申请
    • ENHANCED NEIGHBOR RELATIONS AND PHYSICAL CELL IDENTIFIER CONFUSION DETECTION
    • 增强的邻域关系和物理细胞识别混淆检测
    • WO2017218215A1
    • 2017-12-21
    • PCT/US2017/035721
    • 2017-06-02
    • QUALCOMM INCORPORATED
    • SINGH, DamanjitPATEL, ChiragSHARMA, ManuPRAKASH, Rajat
    • H04W24/02
    • Methods, systems, and devices for enhanced neighbor discovery through enhanced automatic neighbor relations (ANR) and for detecting cell identifier confusion and are described. Neighboring base stations may provide information to one another, including using ANR, that may avoid or help to resolve cell identity confusion. For example, a NHN-ID may be defined to avoid or resolve cell identify confusion. A wireless device, such as a base station or a user equipment (UE), may determine whether neighboring cells are using a common cell identifier and may adjust operations accordingly. For example, a device may detect physical cell identity (PCI) confusion by determining whether two neighboring cells have the same PCI and different Evolved Universal Terrestrial Access Network (E-UTRAN) Cell Global Identifiers (ECGIs) or different Neutral Host Network Identifier (NHN-IDs). A network entity may then inform the neighboring cells having the same PCI of the confusion.
    • 通过增强的自动相邻关系(ANR)和用于检测小区标识符混淆的增强邻居发现的方法,系统和设备被描述。 相邻基站可以向彼此提供信息,包括使用ANR,这可以避免或帮助解决小区身份混淆。 例如,可以定义NHN-ID以避免或解决小区识别混淆。 诸如基站或用户设备(UE)之类的无线设备可以确定相邻小区是否正在使用公共小区标识符并且可以相应地调整操作。 例如,设备可以通过确定两个相邻小区是否具有相同的PCI和不同的演进型通用陆地接入网(E-UTRAN)小区全球标识符(ECGI)或不同的中性主机网络标识符(NHN)来检测物理小区标识(PCI)混淆 -ids)。 网络实体然后可以通知具有相同PCI的相邻小区的混淆。
    • 47. 发明申请
    • ACCESS POINT BROADCASTING OF ADVERTISEMENTS
    • 接入点广告广告
    • WO2015048010A2
    • 2015-04-02
    • PCT/US2014/056964
    • 2014-09-23
    • QUALCOMM INCORPORATED
    • SINGH, Damanjit
    • G06Q30/0267H04H20/61
    • Advertisements are presented to users of cell phones and other types of access terminals. For example, advertisements may be presented to a user when the user's access terminal is served by or camped on an access point such as a small cell. After obtaining an advertisement, an access point broadcasts a message that includes the advertisement. Advantageously, the advertisement may be broadcast via an HNB Name field defined in 3GPP. Consequently, upon receiving a broadcast including an HNB Name field, an access terminal will automatically display the advertisement included in the HNB Name field (e.g., instead of an HNB Name).
    • 广告呈现给手机和其他类型的接入终端的用户。 例如,当用户的接入终端由诸如小小区之类的接入点服务或驻扎在接入点时,可以向用户呈现广告。 接入点获得广告后,广播包含该广告的消息。 有利地,广告可以经由3GPP中定义的HNB名称字段来广播。 因此,在接收到包括HNB名称字段的广播时,接入终端将自动显示包括在HNB名称字段中的广告(例如,而不是HNB名称)。
    • 48. 发明申请
    • AVOIDING CSG-BASED ACCESS CONTROL WHEN CSG IDENTIFIER IS USED FOR PURPOSES OTHER THAN ACCESS CONTROL
    • WO2014014679A3
    • 2014-01-23
    • PCT/US2013/049384
    • 2013-07-03
    • QUALCOMM INCORPORATED
    • SINGH, DamanjitCHEN, Jen MeiYAVUZ, Mehmet
    • H04W48/02H04W12/08
    • The application relates to femtocells where low power base stations advertise restricted access such to allow closed access only to mobile devices that are members of a corresponding group (e.g., closed subscriber group (CSG)), or to allow hybrid access such that member devices receive improved access over non-member devices. The low power base stations, in this regard, can broadcast a CSG identity for determining association to the low power base station. However, the CSG identifier might be advertised even though the base station does not operate in the associated closed or hybrid access mode. This might be because the CSG identifier is uses for purposes other than access control, e.g. to identify as a cluster of femto nodes that self-configure by adjusting transmit power to provide continuous coverage; self-heal in case of femto node failure within the cluster (e.g., by increasing transmit power of the other femto nodes in the cluster); select cell selection/reselection thresholds among the cluster to allow a desired load or network propagation; and/or the like. Hence, CSG membership verification is not needed and the application proposes different alternatives of how to avoid such a verification. According to one alternative, the femto node is pre-configured. According to another alternative, a non-CSG UE indicates that it is capable of performing CSG functions even though it may not be so capable. According to a third alternative, even though the HNB 304 determines that the UE 302 is not CSG-capable, e.g., while checking UE release/capabilities, it specifies CSG capability for UE in the UE registration request. According to a fourth alternative, the femto node appears to UEs as a restricted or hybrid access femto node, but operates to the core network or femto gateway as an open access mode femto node.