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    • 91. 发明授权
    • Adaptive scheme for lowering uplink control overhead
    • 降低上行控制开销的自适应方案
    • US08169964B2
    • 2012-05-01
    • US11906324
    • 2007-10-01
    • Troels KoldingFrank Frederiksen
    • Troels KoldingFrank Frederiksen
    • H04W4/00H04J3/00H04B7/212H04J3/02
    • H04W72/042H04L1/1664H04L1/1812H04L1/1854H04L1/1858H04L2001/0093H04W72/1263H04W72/1278
    • The present invention is related to methods, apparatuses, systems and computer software for determining an amount of physical resources for downlink transmission, and allocating uplink physical resources for transmission of data-non-associated control signaling based at least on the amount of physical resources for downlink transmission. The amount of physical resources for downlink transmission comprises an amount of downlink control signaling. The present invention further relates to a framework for mapping the dedicated uplink control channels directly to single physical resource blocks. The framework is able to efficiently shift physical resources to and from the uplink control channel for ACK/NACK reports, in a data-non-associated control signaling scheme and on a per subframe basis. The present invention is also concerned with scheduler, for example an eNodeB scheduler, which uses its scheduling history and knowledge of user equipment capabilities to increase utilization of uplink resources.
    • 本发明涉及用于确定用于下行链路传输的物理资源量的方法,装置,系统和计算机软件,并且至少基于物理资源的数量来分配上行链路物理资源以传输数据非关联控制信令 下行传输。 用于下行链路传输的物理资源量包括下行链路控制信令的量。 本发明还涉及用于将专用上行链路控制信道直接映射到单个物理资源块的框架。 该框架能够在数据非关联的控制信令方案和每个子帧的基础上有效地将物理资源移动到上行链路控制信道以用于ACK / NACK报告。 本发明还涉及调度器,例如eNodeB调度器,其使用其调度历史和用户设备能力的知识来增加上行链路资源的利用率。
    • 92. 发明申请
    • Optimizing Control Channel Performance With Virtual Inter-Cell Coordination
    • 通过虚拟小区间协调优化控制信道性能
    • US20110312363A1
    • 2011-12-22
    • US12817383
    • 2010-06-17
    • Troels E. KoldingFrank Frederiksen
    • Troels E. KoldingFrank Frederiksen
    • H04B7/00
    • H04B7/024H04L5/003H04L5/006H04L5/0062H04L5/0064H04W72/0486H04W72/082H04W72/085H04W72/10H04W72/12
    • Channel conditions within each of N contiguous cells is determined. Based on at least the determined N channel conditions, there is determined a set of the N cells which are to utilize joint scheduling, and resources for a control channel are jointly assigning to individual cells of the set of cells. In various embodiments, the channel conditions are SINR and load on the control channel; and the set of cells is decided based on potential for mutual interference and/or potential that the control channel will not be filled. The resource may be jointly assigned based on user priority, so that serially for each highest priority user resources are assigned, the assigned resources are then blocked from compiled lists of radio resources, the highest priority user is removed and a next highest priority user is then the highest priority user to continue in the serial iteration.
    • 确定每个N个相邻小区内的信道条件。 基于至少所确定的N个信道条件,确定要使用联合调度的N个小区的集合,并且用于控制信道的资源共同分配给该组小区的各个小区。 在各种实施例中,信道条件是SINR和控制信道上的负载; 并且基于相互干扰的可能性和/或控制信道将不被填充的潜力来决定该组信元。 可以基于用户优先级共同分配资源,以便分配用于每个最高优先级的用户资源的连续分配,然后将所分配的资源从无线电资源的编译列表中阻止,最高优先级的用户被移除,然后下一个最高优先级的用户 最高优先级的用户继续进行串行迭代。
    • 93. 发明授权
    • Apparatus, method and computer program product providing dynamic sharing of resources between uplink and downlink allocations for separately coded users
    • 为单独编码的用户提供上行链路和下行链路分配之间资源的动态共享的装置,方法和计算机程序产品
    • US08027295B2
    • 2011-09-27
    • US12008277
    • 2008-01-09
    • Frank FrederiksenOlav Tirkkonen
    • Frank FrederiksenOlav Tirkkonen
    • H04W4/00
    • H04L27/2602H04J3/1682H04L5/143H04W72/005H04W72/14
    • Apparatus, methods and computer program products operate an electronic device to generate downlink allocation information and uplink allocation to be signaled to other electronic devices operative in a wireless communications system; and to operate radio apparatus to signal the downlink allocation information and uplink allocation information in a control channel, wherein the downlink allocation information is signaled in a downlink allocation portion of the control channel and the uplink allocation information is signaled in an uplink allocation portion of the control channel. In a variant, apparatus, methods and computer program products operate an electronic device to receive downlink and uplink allocation information signaled in a control channel by a wireless communications system; and to search for downlink allocation information in the downlink allocation portion and uplink allocation information in the uplink allocation portion.
    • 装置,方法和计算机程序产品操作电子设备以产生要向无线通信系统中操作的其他电子设备发信号的下行链路分配信息和上行链路分配; 并且操作无线电设备以在控制信道中发送下行链路分配信息和上行链路分配信息,其中在控制信道的下行链路分配部分中用信号通知下行链路分配信息,并且在上行链路分配信息的上行链路分配部分中用信号通知上行链路分配信息 控制通道。 在一个变型中,设备,方法和计算机程序产品操作电子设备以接收由无线通信系统在控制信道中发信号的下行链路和上行链路分配信息; 并且搜索下行链路分配部分中的下行链路分配信息和上行链路分配部分中的上行链路分配信息。
    • 95. 发明授权
    • Multi-level control for measurement reports
    • 测量报告的多级控制
    • US07933606B2
    • 2011-04-26
    • US11583002
    • 2006-10-19
    • Frank FrederiksenTroels Kolding
    • Frank FrederiksenTroels Kolding
    • H04W72/10H04W24/10
    • H04W24/10
    • The present invention relates to a method, terminal device, network element, system and computer program product for handling measurement reports in a communication network. At least two different levels of measurements reports (15) are provided, wherein each of the at least two levels corresponds to a different amount of resource blocks on which the measurement reports are based. The level of a received measurement report (15) is detected and a compensation offset is selected based on the detection result and applied to the measurement report. Thereby, measurement errors and biases of the measurement reports can be dynamically corrected in multi-level reporting schemes.
    • 本发明涉及用于处理通信网络中的测量报告的方法,终端设备,网元,系统和计算机程序产品。 提供至少两个不同级别的测量报告(15),其中所述至少两个级别中的每一级对应于测量报告所基于的不同数量的资源块。 检测到接收到的测量报告(15)的电平,并且基于检测结果选择补偿偏移并将其应用于测量报告。 因此,可以在多级报告方案中动态地校正测量报告的测量误差和偏差。
    • 96. 发明授权
    • Channel quality signaling
    • 信道质量信令
    • US07826851B2
    • 2010-11-02
    • US11717704
    • 2007-03-14
    • Troels KoldingFrank FrederiksenOlav Tirkkonen
    • Troels KoldingFrank FrederiksenOlav Tirkkonen
    • H04L12/403
    • H04L1/0026H04L5/023H04W28/24
    • A channel quality signaling method and a telecommunication system are provided. The system comprises a base station and one or more user equipment, the base station and the user equipment being configured to communicate with each other using a set of given resources. The system comprises a network element for determining connection information comprising the resources to which the channel quality signaling relates, the user equipment capability, and reference information regarding transmission power used by the base station, a network element for determining connection quality criteria. User equipment is configured to measure a parameter relating to the quality of the received signal from a signal received from a base station, determine an identification of physical connection parameters with which the connection quality criteria may be fulfilled given the determined connection information, and transmit the determined identification to the base station.
    • 提供信道质量信令方法和电信系统。 该系统包括基站和一个或多个用户设备,所述基站和用户设备被配置为使用一组给定资源来彼此通信。 该系统包括用于确定包括信道质量信令所关联的资源,用户设备能力和关于基站使用的传输功率的参考信息的连接信息的网络元件,用于确定连接质量标准的网络元件。 用户设备被配置为从从基站接收的信号中测量与接收信号的质量有关的参数,在给定所确定的连接信息的情况下确定可以满足连接质量标准的物理连接参数的标识,并且发送 确定的基站识别。
    • 98. 发明申请
    • Selecting between normal and virtual dual layer ACK/NACK
    • 在正常和虚拟双层ACK / NACK之间进行选择
    • US20090323613A1
    • 2009-12-31
    • US12459352
    • 2009-06-30
    • Frank FrederiksenTroels E. KoldingXiang Guang Che
    • Frank FrederiksenTroels E. KoldingXiang Guang Che
    • H04W4/00
    • H04L5/0055H04L1/1621H04L1/1692H04L1/1861H04L5/0053H04W24/08H04W72/042
    • An allocation of downlink resources is received, which are monitored on I layers for data. A resource-specific bit (ACK/NACK) is generated for each of those resources. From a pattern of those resources is selected an algorithm from among a first algorithm that bundles them in a first mode and a second algorithm that bundles them in a second mode. The selected algorithm is used on the generated resource-specific bits that correspond to the downlink resources, bundled according to the selected mode, to generate I reply bits which are then transmitted. At the network side a NACK reply bit is received, based on a pattern of the allocated downlink resources, a first algorithm that bundles them in a first mode or a second algorithm that bundles them in a second mode is selected. A bundling window and layer combination are determined from the selected algorithm, which gives the resource for retransmitting the NACK'd data.
    • 接收下行链路资源的分配,在I层上监视数据。 为这些资源中的每一个生成资源特定位(ACK / NACK)。 从这些资源的模式中选择来自在第一模式中捆绑它们的第一算法和在第二模式中将它们捆绑的第二算法的算法。 所选择的算法用于根据所选模式捆绑的对应于下行链路资源的生成的资源特定比特,以产生随后被发送的I个应答比特。 在网络侧,基于分配的下行链路资源的模式来接收NACK应答位,选择以第一模式捆绑它们的第一算法或者以第二模式捆绑它们的第二算法。 从所选择的算法确定捆绑窗口和层组合,其给出用于重传NACK'd数据的资源。