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    • 31. 发明授权
    • MAC packet data unit construction for wireless systems
    • 用于无线系统的MAC分组数据单元构造
    • US08737421B2
    • 2014-05-27
    • US12874829
    • 2010-09-02
    • Hang ZhangMo-Han Fong
    • Hang ZhangMo-Han Fong
    • H04J3/16
    • H04W28/065H04L1/1867H04W12/02
    • A method for wireless communication using MAC PDUs. The method includes determining one or more characteristics of a service flow and selecting on the basis of the one or more characteristics a MAC PDU header type among a plurality of MAC PDU header types. The service flow data is encapsulated in MAC PDUs with a header of the selected type. The MAC PDUs with the encapsulated service flow data are then wirelessly transmitted. Also, a method for communication between a Base Station (BS) and a Subscriber Station (SS). The method includes generating at the BS a plurality of MAC PDU packets with a payload component holding service flow data and a plurality of MAC PDU packets without payload component, carrying control information. The method also includes transmitting wirelessly the MAC PDU packets with the payload component and the MAC PDU packets with the control information to the SS.
    • 一种使用MAC PDU进行无线通信的方法。 该方法包括确定服务流的一个或多个特性,并且基于一个或多个特性来选择多个MAC PDU头类型中的MAC PDU头类型。 服务流数据被封装在具有所选类型的报头的MAC PDU中。 具有封装业务流数据的MAC PDU随后被无线传输。 另外,一种用于基站(BS)和用户站(SS)之间的通信的方法。 该方法包括在BS处生成具有保存业务流数据的有效载荷分量的多个MAC PDU分组,以及携带控制信息的无有效载荷分量的多个MAC PDU分组。 该方法还包括将具有控制信息的有效载荷分量和MAC PDU分组的MAC PDU分组无线发送到SS。
    • 33. 发明授权
    • Apparatus and method for mobile assisted adaptive FFR
    • 移动辅助自适应FFR的装置和方法
    • US08649338B2
    • 2014-02-11
    • US12830909
    • 2010-07-06
    • Sophie VrzicMo-Han Fong
    • Sophie VrzicMo-Han Fong
    • H04B17/00H04W72/12
    • H04W72/082H04L5/0007H04L5/0032H04L5/0044H04L5/0062H04L5/0091H04W16/10H04W52/143H04W52/241H04W52/244H04W52/247H04W52/248H04W52/38H04W52/386
    • In a method of fractional frequency reuse in a communication network, a frequency band is divided into a plurality of sub-bands according to a Fractional Frequency Reuse (FFR) scheme to define a FFR allocation of the band for a plurality of bases stations, each of the base stations being associated with a respective region. At a first base station of the plurality of base stations, the first base station associated with a first region, communication with a mobile terminal in the first region is established on one of the plurality of sub-bands according to the FFR allocation. A second base station of the plurality of base stations, the second base station associated with a second region, transmits on the one of the plurality of sub-bands according to the FFR allocation; receives an indication of a coverage problem detected at the mobile terminal due to interference from the second base station on the one of the plurality of sub-bands; and in response to the receiving the indication, decreases a transmit power level for the one of the plurality of sub-bands in the second region.
    • 在通信网络中的分数频率重用的方法中,根据分数频率重用(FFR)方案将频带划分为多个子带,以定义多个基站的频带的FFR分配,每个 的基站与相应区域相关联。 在多个基站的第一基站处,根据FFR分配,在多个子带中的一个子带上建立与第一区域相关联的第一基站与第一区域中的移动终端的通信。 多个基站的第二基站,与第二区域相关联的第二基站根据FFR分配在多个子带中的一个上进行发送; 由于来自所述第二基站的所述多个子带中的所述一个子带的干扰,接收在所述移动终端处检测到的覆盖问题的指示; 并且响应于接收到所述指示,降低所述第二区域中的所述多个子带中的所述一个子带的发射功率电平。
    • 35. 发明授权
    • Hybrid-QRD-SIC and imbalanced MCS system and method for MIMO
    • 混合QRD-SIC和不平衡MCS系统和MIMO方法
    • US08576775B2
    • 2013-11-05
    • US12768262
    • 2010-04-27
    • Yongkang JiaMo-Han FongZhijun CaiYi YuHua Xu
    • Yongkang JiaMo-Han FongZhijun CaiYi YuHua Xu
    • H04B1/00
    • H04L25/0328H04J11/004H04J11/0043H04L1/0048H04L25/03331H04L2025/03426
    • A method and system for multiple input, multiple output (MIMO) detection and channel decoding comprising: decomposing a channel complex gain matrix into a unitary matrix and an upper right hand triangular matrix; providing a received signal to a complex conjugate transpose of the unitary matrix, thereby creating a plurality of signals; normalizing a last of the plurality of signals; channel decoding the normalized last of the plurality of signals, thereby recovering a last codeword signal; encoding the last codeword signal; utilizing the encoded last codeword signal to recover a second last codeword signal; and repeating the utilizing until all codeword signals are recovered. Also, a method and system for providing an imbalanced modulation and coding scheme for successive interference cancellation.
    • 一种用于多输入多输出(MIMO)检测和信道解码的方法和系统,包括:将信道复增益矩阵分解为单一矩阵和右上角三角矩阵; 将接收的信号提供给酉矩阵的复共轭转置,从而产生多个信号; 归一化所述多个信号中的最后一个信号; 对所述多个信号中的归一化最后一个信道进行解码,从而恢复最后的码字信号; 对最后一个码字信号进行编码; 利用编码的最后码字信号来恢复第二最后码字信号; 并重复利用直到所有码字信号被恢复。 而且,提供用于连续干扰消除的不平衡调制和编码方案的方法和系统。
    • 36. 发明申请
    • EXCHANGING CONFIGURATION DATA
    • 交换配置数据
    • US20130272181A1
    • 2013-10-17
    • US13681370
    • 2012-11-19
    • Mo-Han FongGeng WuChang Hong ShanPuneet JainMuthaiah Venkatachalam
    • Mo-Han FongGeng WuChang Hong ShanPuneet JainMuthaiah Venkatachalam
    • H04W72/04
    • H04W72/044H04W4/00H04W4/20H04W4/50
    • Embodiments of apparatus, computer-implemented methods, systems, devices, and computer-readable media are described herein for a user equipment (“UE”) to generate, for transmission to a remote entity executing on a remote computing device in communication with the UE over an air interface of an Evolved Universal Terrestrial Radio Access Network (“EUTRAN”), a container that includes UE or base station (e.g., Evolved Node B, or “eNB”) configuration data (e.g., an inactivity time interval), or over-the-top (“OTT”) application configuration data. In embodiments, the UE may transmit the container through a logical tunnel passing through the air interface between a local processing entity executing on the computing device and the remote entity. A base station such as an eNB may be similarly configured to generate and/or transmit, to a UE, a container with UE, base station, or OTT application configuration data, through a logical tunnel passing through the air interface.
    • 本文描述了设备,计算机实现的方法,系统,设备和计算机可读介质的实施例,用于用户设备(“UE”)生成用于与在与UE通信的远程计算设备上执行的远程实体的传输 在演进的通用陆地无线电接入网络(“EUTRAN”)的空中接口上,包括UE或基站(例如演进节点B或“eNB”)配置数据(例如,不活动时间间隔)的容器,或 顶级(“OTT”)应用程序配置数据。 在实施例中,UE可以通过穿过计算设备上执行的本地处理实体与远程实体之间的空中接口的逻辑隧道来发送容器。 诸如eNB的基站可以类似地配置为通过穿过空中接口的逻辑隧道向UE发送和/或向UE发送具有UE,基站或OTT应用配置数据的容器。
    • 38. 发明授权
    • Optimizing downlink communications between a base station and a remote terminal by power sharing
    • 通过功率共享优化基站和远程终端之间的下行链路通信
    • US08547861B2
    • 2013-10-01
    • US12801977
    • 2010-07-06
    • Jun YuanMo-Han Fong
    • Jun YuanMo-Han Fong
    • G01R31/08
    • H04L1/0016H04L1/0003H04L1/0009H04W52/262H04W72/0473H04W84/047
    • A method of optimizing downlink communications between a base station and mobile stations in a wireless communication system involves: identifying users that have a modulation control scheme (MCS) power value greater than a reference power value as high power users; for each of the high power users, calculating a power difference being a difference between a geometry value associated with each of the high power users and a reference geometry value associated with the reference power value respectively; summing the power differences in a power pool; identifying users that have an MCS power value below the reference power value as low power users; associating increased geometry values with at least some of the low power users while depleting the power pool by corresponding amounts until the power pool is depleted; and determining new MCSs for at least some of the low power users based on the increased geometry values.
    • 一种在无线通信系统中优化基站与移动台之间的下行链路通信的方法,包括:将具有大于参考功率值的调制控制方案(MCS)功率值的用户识别为大功率用户; 对于每个高功率用户,计算功率差是与每个高功率用户相关联的几何值之间的差异以及与参考功率值相关联的参考几何值; 总结电力系统的功率差异; 将具有低于参考功率值的MCS功率值的用户识别为低功率用户; 将增加的几何值与至少一些低功率用户相关联,同时在功率池耗尽之前将功率池耗尽相应的量; 以及基于所增加的几何值来为至少一些所述低功率用户确定新的MCS。