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    • 61. 发明授权
    • Cell specific retransmission of single frequency network MBMS data
    • 单频网络MBMS数据的小区特定重传
    • US08477673B2
    • 2013-07-02
    • US11760645
    • 2007-06-08
    • Lorenzo CasacciaNathan E. Tenny
    • Lorenzo CasacciaNathan E. Tenny
    • H04H20/71
    • H04L1/1887H04L1/1607H04L2001/0093H04W72/005
    • Providing for retransmission of SFN data, including SFN operated MBMS data, in a manner that preserves synchronization of scheduled SFN transmissions is disclosed herein. As an example, SFN data can be transmitted in a first allocation period, and an un-received or indecipherable SFN data packet associated with the SFN data can be scheduled in a second allocation period. More particularly, the un-received or indecipherable SFN data packet can be allocated to a block of the second allocation period that is scheduled for non-SFN transmission, for instance. Accordingly, SFN retransmission can take place on a cell by cell basis without substantially affecting SFN transmissions synchronized among the cells.
    • 本文公开了以保持预定的SFN传输的同步的方式提供包括SFN操作的MBMS数据的SFN数据的重传。 作为示例,可以在第一分配周期中发送SFN数据,并且可以在第二分配周期中调度与SFN数据相关联的未接收或不可解密的SFN数据分组。 更具体地,例如,未接收或不可解密的SFN数据分组可以被分配给被调度用于非SFN传输的第二分配周期的块。 因此,SFN重传可以在逐个小区的基础上进行,而不会基本上影响小区之间同步的SFN传输。
    • 62. 发明申请
    • METHODS AND APPARATUS FOR WIRELESS DEVICE POSITIONING IN MULTICARRIER CONFIGURATIONS
    • 无线设备定位在多功能配置中的方法和设备
    • US20120329476A1
    • 2012-12-27
    • US13529164
    • 2012-06-21
    • Nathan E. Tenny
    • Nathan E. Tenny
    • H04W24/00
    • H04W64/00H04W76/15
    • The described aspects include methods and apparatus for performing positioning for a user equipment (UE). The UE can communicate with a plurality of serving cells in a multicarrier configuration, and can indicate a plurality of serving cell identifiers corresponding to the plurality of serving cells in a message to a positioning server. The positioning server can obtain location information corresponding to at least a portion of a plurality of cells, or related eNBs, related to the plurality of serving cell identifiers, and can communicate the location information to the UE. The UE can perform positioning based at least in part on the location information.
    • 所描述的方面包括用于为用户设备(UE)执行定位的方法和装置。 UE可以与多载波配置中的多个服务小区进行通信,并且可以将消息中的多个服务小区对应的多个服务小区标识符指示给定位服务器。 定位服务器可以获得与多个小区标识符相关的多个小区或相关eNB的至少一部分相对应的位置信息,并且可以将该位置信息传送给UE。 UE可以至少部分地基于位置信息执行定位。
    • 64. 发明申请
    • METHOD AND APPARATUS FOR DETERMINING TIMING INFORMATION FOR CELLS
    • 用于确定细胞时序信息的方法和装置
    • US20120190373A1
    • 2012-07-26
    • US13354020
    • 2012-01-19
    • Nathan E. Tenny
    • Nathan E. Tenny
    • H04W24/00H04W16/14H04W4/00
    • H04W56/0015
    • Techniques for determining timing information for cells are disclosed. A user equipment (UE) may communicate with a serving cell and may need to make measurements of other cells, e.g., to support positioning of the UE. Each cell may transmit reference signals based on its timing. Different cells may operate asynchronously or with unknown timing. The UE may send a request for measurement gaps to the serving cell and may include timing information in the request. The timing information may (directly or indirectly) convey relative timing between the serving cell and a reference cell. The serving cell may determine measurement gaps at the proper time for other cells based on the timing information from the UE and may avoid scheduling the UE for data transmission during the measurement gaps. The UE may make measurements of other cells during the measurement gaps, without losing any data from the serving cell.
    • 公开了用于确定小区的定时信息的技术。 用户设备(UE)可以与服务小区通信,并且可能需要对其他小区进行测量,例如支持UE的定位。 每个单元可以基于其定时来发送参考信号。 不同的单元可以异步运行或者以未知的时序运行。 UE可以向服务小区发送测量间隙的请求,并且可以在请求中包括定时信息。 定时信息可以(直接地或间接地)传送服务小区和参考小区之间的相对定时。 服务小区可以基于来自UE的定时信息来确定其他小区在适当时间的测量间隙,并且可以避免在测量间隙期间调度UE进行数据传输。 UE可以在测量间隙期间对其他小区进行测量,而不丢失来自服务小区的任何数据。
    • 66. 发明申请
    • FREQUENCY HOPPING IN A WIRELESS COMMUNICATION NETWORK
    • 在无线通信网络中频繁使用
    • US20100189032A1
    • 2010-07-29
    • US12621945
    • 2009-11-19
    • Wanshi ChenPeter GaalJuan MontojoMasato KitazoeSaiyiu Duncan HoNathan E. Tenny
    • Wanshi ChenPeter GaalJuan MontojoMasato KitazoeSaiyiu Duncan HoNathan E. Tenny
    • H04B1/713H04W4/00
    • H04B1/7143
    • Techniques for performing frequency hopping in a wireless network are described. In an aspect, frequency hopping may be performed based on both cell identity (ID) and system time information. In one design, a user equipment (UE) may determine a cell ID of a cell and may obtain system time information for the cell. The UE may determine resources to use for transmission with frequency hopping based on the cell ID and the system time information. In one design, the UE may initialize a PN generator in each radio frame with an initial value determined based on the cell ID and a system frame number (SFN) for the radio frame. The UE may determine the resources to use for transmission based on a hopping function, a mirroring function, and a PN sequence from the PN generator. The UE may send a transmission on the resources to the cell.
    • 描述用于在无线网络中执行跳频的技术。 在一个方面,可以基于小区标识(ID)和系统时间信息来执行跳频。 在一种设计中,用户设备(UE)可以确定小区的小区ID,并且可以获得小区的系统时间信息。 UE可以基于小区ID和系统时间信息来确定用于使用跳频进行传输的资源。 在一种设计中,UE可以利用基于小区ID确定的初始值和无线电帧的系统帧号(SFN)来初始化每个无线电帧中的PN发生器。 基于来自PN发生器的跳频功能,镜像功能和PN序列,UE可以确定用于传输的资源。 UE可以向资源发送资源上的传输。