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    • 1. 发明授权
    • TV white space devices using structured databases
    • 电视白色空间设备使用结构化数据库
    • US08755813B2
    • 2014-06-17
    • US13498106
    • 2010-07-09
    • Jung YeeVajira SamarasooriyaLingjie Li
    • Jung YeeVajira SamarasooriyaLingjie Li
    • H04W72/00
    • G06F17/30289G06F17/30091G06F17/30345G06F17/30557H04W16/14H04W28/18H04W48/14
    • A two-level database structure for use by unlicensed TVBD devices operating in TV white space comprises a central database and local databases. The central database comprises two sub-database: the central licensed database which maintains information about all licensed TV devices and the central unlicensed database which maintains information about unlicensed wireless devices operating in TV spectrum. The local database is created by each TVBD device or TVBD network when it initiates and it stores information related to all transmitters in the local area including location, power transmission levels, operating schedule, sensing results, backup channel information. The local databases communicate with central database to query it about licensed usage of TV spectrum and register with central database. The local databases communicate with each other to exchange information about channel usage, sensing results, transmission patterns and other information that will allow the local databases to negotiate coexistence without central coordinator. The locally implemented negotiation prevents the overloading of the central database.
    • 用于在TV空白中工作的未经许可的TVBD设备使用的两级数据库结构包括中央数据库和本地数据库。 中央数据库包括两个子数据库:中央许可数据库,其维护关于所有许可的电视设备的信息和中央非许可数据库,其维护关于在TV频谱中操作的未许可的无线设备的信息。 每个TVBD设备或TVBD网络创建本地数据库,并且存储与本地区域中的所有发射机有关的信息,包括位置,功率传输级别,操作时间表,感测结果,备份信道信息。 本地数据库与中央数据库进行通信,查询有关电视频谱的许可使用情况,并向中央数据库注册。 本地数据库相互通信以交换关于信道使用,感测结果,传输模式和其他信息的信息,这些信息将允许本地数据库在没有中央协调器的情况下协商共存。 本地实施的协商可以防止中央数据库的超载。
    • 6. 发明授权
    • Systems and methods for channel tracking in OFDMA
    • OFDMA中的信道跟踪系统和方法
    • US08675586B2
    • 2014-03-18
    • US13297656
    • 2011-11-16
    • Lingjie LiMichael L. MoherJung Yee
    • Lingjie LiMichael L. MoherJung Yee
    • H04W4/00
    • H04L5/0007H04L5/0044H04L5/0048H04L5/0094
    • Methods and systems for operating a base station communicating with one or more user terminals in an orthogonal frequency division multiple access (OFDMA) system where the one or more user terminals are configured to insert pilots in up stream bursts every nth symbol on each subcarrier, where n is an integer, are provided. The method includes identifying a needed amount of up stream bandwidth to be allocated to a user terminal; determining the subcarriers and the number of symbols per subcarrier to be allocated to meet the identified need in a burst; allocating, for the user terminal, a set of subcarriers and a number of symbols for each member of the set of subcarriers, wherein sufficient symbols per subcarrier per burst are allocated to allow user terminal to send two or more pilots per subcarrier per burst; and transmitting a message to the user terminal, the message identifying the allocated subcarriers and the number of symbols allocated for each subcarrier.
    • 用于在正交频分多址(OFDMA)系统中操作与一个或多个用户终端通信的基站的方法和系统,其中一个或多个用户终端被配置为在每个子载波上每第n个符号的上行脉冲串中插入导频,其中 n是整数。 该方法包括:识别要分配给用户终端的上行带宽所需的量; 确定要在分组中满足所识别的需要的每个副载波的子载波和符号的数量; 为用户终端分配一组子载波和每个子载波组的每个成员的符号数,其中每个突发的每个子载波的足够符号被分配以允许用户终端每个突发发送两个或更多个每个子载波的导频; 以及向所述用户终端发送消息,所述消息标识所分配的副载波和为每个副载波分配的符号数。
    • 9. 发明申请
    • METHODS AND APPARATUS FOR OFDM SYMBOL SYNCHRONIZATION FOR IN-DOOR DIGITAL TV RECEPTION
    • 用于门内数字电视接收的OFDM符号同步的方法和装置
    • US20110051862A1
    • 2011-03-03
    • US12551980
    • 2009-09-01
    • Lingjie LiShiquan Wu
    • Lingjie LiShiquan Wu
    • H04L27/06
    • H04L27/2665H04L27/2607H04L27/2663H04L27/2678H04L27/2688
    • A received signal comprises a continuous sequence of symbols φ1, φ2, . . . φn, each represented by a sequence of samples X0, X2, . . . Xn−1, and wherein the symbols have a guard period GP of duration Tgp at the beginning thereof. Each guard period contains a cyclic prefix with the same subsequence of samples as a tail end portion of the associated symbol. The symbols are identified by delaying the received signal by a fixed number of samples, computing the correlation of the received signal with the delayed signal, computing the summation of said correlation over a window of duration Ti, wherein Ti>Tgp, and sliding the window over the correlation to find a characteristic point or region. The start of each symbol for further processing is selected from the characteristic point or region. By increasing the duration of the window, more robust performance can be achieved, especially in multipath conditions.
    • 接收到的信号包括连续的符号序列&phgr; 1,&phgr; 2,。 。 。 每个由样本X0,X2,...的序列表示。 。 。 Xn-1,并且其中符号在其开始处具有持续时间Tgp的保护周期GP。 每个保护周期包含循环前缀,其具有与相关联的符号的尾端部分相同的样本子序列。 通过将接收到的信号延迟固定数量的样本来识别符号,计算接收信号与延迟信号的相关性,计算持续时间Ti的窗口上的所述相关性的总和,其中Ti> Tgp,并且滑动窗口 在相关性上找到特征点或区域。 从特征点或区域中选择用于进一步处理的每个符号的开始。 通过增加窗口的持续时间,可以实现更强大的性能,特别是在多径条件下。
    • 10. 发明授权
    • Apparatus and method for merit based cognitive radio frequency resource allocation
    • 基于优点的认知射频资源分配的装置和方法
    • US08938251B2
    • 2015-01-20
    • US13540292
    • 2012-07-02
    • Lingjie LiJung Yee
    • Lingjie LiJung Yee
    • H04W72/00H04W16/14
    • H04W16/14
    • A frequency resource allocation system and method for a wireless network that comprises one or more unlicensed cognitive devices that operate using white spaces in a TV frequency spectrum and one or more licensed incumbent devices that are associated with an incumbent service that uses the TV frequency spectrum stores one or more frequency resource databases that store one or more frequency band lists. A frequency band list comprises one or more frequency bands within the TV frequency spectrum. Merit-related information specific to a location associated with the wireless network are collected to choose a specified frequency based on the merit-related information. The specified frequency band can be chosen based on a merit class derived from transforming the merit-related information into different merit classes, with each merit class being associated with one or more frequency bands. A resource user device is then notified to operate in the specified frequency band.
    • 一种用于无线网络的频率资源分配系统和方法,其包括使用TV频谱中的空格操作的一个或多个未许可的认知设备和与使用TV频谱存储的现有服务相关联的一个或多个许可的现任设备 存储一个或多个频带列表的一个或多个频率资源数据库。 频带列表包括TV频谱内的一个或多个频带。 收集与无线网络相关的位置特定的优点相关信息,以根据与功能相关的信息选择指定的频率。 可以基于从功能相关信息转换为不同优值级别而导出的优值类别来选择指定的频带,每个品质类别与一个或多个频带相关联。 然后通知资源用户设备在指定的频带中操作。