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    • 22. 发明授权
    • Cooperative ultra-reliable wireless communications
    • 合作超可靠的无线通信
    • US08218523B2
    • 2012-07-10
    • US12419874
    • 2009-04-07
    • Zhifeng TaoPhilip V. OrlikZafer SahinogluAndreas F. MolischJinyun Zhang
    • Zhifeng TaoPhilip V. OrlikZafer SahinogluAndreas F. MolischJinyun Zhang
    • H04J3/16
    • H04L1/1621H04L27/26H04L2001/0093H04L2001/0097
    • A network includes a master node (master) and a set of slave nodes (slaves). The network uses orthogonal frequency-division multiplexing (OFDM) and time division multiple access (TDMA) symbols on sub-carriers. During a first downlink transmission from the master to the set of slaves using downlinks and all of the sub-carriers, a broadcast polling packet including data packets for each slave and sub-carrier assignments for the slaves is broadcast. Each slave transmits simultaneously to the master using uplinks and the assigned sub-carriers, a first response packet after receiving the broadcast polling packet. The master then broadcasts using the downlinks and all of the sub-carriers, a group acknowledgement packet, wherein the broadcast polling packet, the response packet, and the group acknowledgement packet include one superframe in one communication cycle, and wherein the broadcasting on the downlinks and the transmitting on the uplinks are disjoint in time.
    • 网络包括主节点(主节点)和一组从节点(从节点)。 该网络在子载波上使用正交频分复用(OFDM)和时分多址(TDMA)符号。 在使用下行链路和所有子载波从主机到从机组的第一次下行链路传输期间,广播包括用于每个从机的数据分组的广播轮询分组和用于从机的子载波分配。 每个从设备使用上行链路和分配的子载波同时发送到主设备,第一响应分组在接收到广播轮询分组之后。 然后主机使用下行链路和所有子载波,一组确认分组广播,其中广播轮询分组,响应分组和组确认分组在一个通信周期中包括一个超帧,并且其中在下行链路上进行广播 并且在上行链路上的发送在时间上是不相交的。
    • 26. 发明申请
    • Clustering Based Resource Allocation in Multi-Cell OFDMA Networks
    • 多小区OFDMA网络中的基于聚类的资源分配
    • US20100214997A1
    • 2010-08-26
    • US12393820
    • 2009-02-26
    • Zhifeng TaoWeihuang FuJinyun Zhang
    • Zhifeng TaoWeihuang FuJinyun Zhang
    • H04W72/04H04W16/02
    • H04W16/12H04W72/082H04W72/085
    • A method allocates resource in an Orthogonal Frequency-Division Multiple Access (OFDMA) network, including a set of Base Stations (BSs) and a set of Mobile Stations (MSs) for each BS. OFDMA frame are constructed as multiple resource blocks, and each resource block contains symbols transmitted on different subcarriers. A cluster is formed from adjacent sectors of different neighboring cells to jointly optimize the resource allocation in multiple frames, and three non-overlap zones are sequentially identified in cluster: cell center zone, cell edge zone, and cluster corner zone. Resource allocation includes intra-cluster proportional fair scheduling and inter-cluster interference mitigation. Intra-cluster scheduling further includes resource allocation for cell center zone and resource allocation for cell edge zone.
    • 一种方法在正交频分多址(OFDMA)网络中分配资源,包括一组基站(BS)和一组用于每个BS的移动站(MS)。 OFDMA帧被构造为多个资源块,每个资源块包含在不同子载波上发送的符号。 从不同相邻小区的相邻扇区形成一个簇,共同优化多个帧中的资源分配,并在簇:小区中心区域,小区边缘区域和群集角区域中顺序识别出三个非重叠区域。 资源分配包括群内比例公平调度和集群间干扰减轻。 集群内调度还包括用于小区中心区的资源分配和小区边缘区域的资源分配。
    • 28. 发明申请
    • Graph-Based Method for Allocating Resources in OFDMA Networks
    • 基于图形的OFDMA网络资源分配方法
    • US20090245085A1
    • 2009-10-01
    • US12112346
    • 2008-04-30
    • Zhifeng TaoYu-Jung ChangJinyun Zhang
    • Zhifeng TaoYu-Jung ChangJinyun Zhang
    • H04J11/00
    • H04L5/0032H04L5/0037H04L5/0058
    • A method allocates radio channel resources in an orthogonal frequency-division multiple access network including a set of base stations (BS) and a set of mobile stations (MS). For each BS, a diversity set is maintained for the sets of MS. Each BS determines possible interference at the MS based on the diversity set. A graph is constructed, in which nodes represent the sets of MS, mid each edge between a pair of nodes represents channel interference between the MS represented by the pair of nodes. A weight is assigned to each edge, which reflects interference between the two MSs connected by the edge. The interference graph is partitioned into non-overlapping clusters of nodes based on a structure of the interference graph, the potential interference, so that a sum of the weights of the edges between each cluster is maximized. Based upon the graph partitioning, the channel resources are allocated to the mobile stations in order to maximize the system capacity.
    • 一种方法在包括一组基站(BS)和一组移动站(MS)的正交频分多址网络中分配无线电信道资源。 对于每个BS,为MS集合保持分集集合。 每个BS基于分集集确定MS处的可能干扰。 构建了一个图,其中节点表示MS集合,一对节点之间的每个边中间表示由该对节点表示的MS之间的信道干扰。 权重被分配给每个边缘,其反映由边缘连接的两个MS之间的干扰。 基于干扰图的结构,潜在的干扰,干扰图被划分成不重叠的节点簇,使得每个簇之间的边的权重之和最大化。 基于图分割,将信道资源分配给移动台,以便最大化系统容量。
    • 30. 发明申请
    • Cooperative Communication in Wireless Cellular Networks
    • 无线蜂窝网络中的协作通信
    • US20090111473A1
    • 2009-04-30
    • US11931378
    • 2007-10-31
    • Zhifeng TaoTairan WangJinyun Zhang
    • Zhifeng TaoTairan WangJinyun Zhang
    • H04Q7/20
    • H04W36/18
    • A method and system communicates cooperatively between base stations and mobile stations in a wireless cellular network. At least two mobile stations are detected in a handover region. A diversity set is established for each mobile station in the handover region. Each diversity set identifies at least two base stations that can communicate with the associated mobile station. The at least two base stations and the at least two mobile stations are combined into members of a cooperation set. A resource is allocated to selected members of the cooperative set. The selected members are notified of the allocated resource. Then, the selected base stations of the cooperation set communicate concurrently with the selected mobile stations using the same allocated resource.
    • 方法和系统在无线蜂窝网络中的基站和移动台之间协作通信。 在切换区域中至少检测到两个移动站。 为切换区域中的每个移动站建立分集集合。 每个分集集识别可以与相关联的移动台进行通信的至少两个基站。 所述至少两个基站和所述至少两个移动台组合成合作集的成员。 资源被分配给合作集合的选定成员。 所选成员被通知所分配的资源。 然后,使用相同的分配资源,所选择的协作集的基站与所选择的移动台同时进行通信。