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    • 41. 发明申请
    • INITIAL ACCESS IN CELLS WITHOUT COMMON REFERENCE SIGNALS
    • 在没有共同参考信号的情况下初次接触细胞
    • US20130195019A1
    • 2013-08-01
    • US13359864
    • 2012-01-27
    • Lars E. LindhKlaus HuglFrank Frederiksen
    • Lars E. LindhKlaus HuglFrank Frederiksen
    • H04W72/04
    • H04L5/0053H04L5/001H04L5/0048H04W72/0406
    • Frequency resources for common control regions of a control channel are defined or determined as a function of at least bandwidth and an identifier of a specific cell. Communications between a wireless network and a mobile device are then done using the defined/determined frequency resources of the common control regions of the control channel. In the non-limiting embodiments: the bandwidth is bandwidth of a cell or of a component carrier; the frequency resources are defined/determined further as a function of an offset value; the common control regions are of an ePDCCH and the offset value differs from a channel edge offset value for common control regions of all other ePDCCHs of all other adjacent cells or all other transmit nodes in the same cell; and the frequency resources comprise frequency stripes (which may be interleaved by resource element groups) distributed in frequency across the bandwidth.
    • 作为至少带宽和特定小区的标识符的函数来定义或确定控制信道的公共控制区域的频率资源。 然后使用控制信道的公共控制区域的定义/确定的频率资源来完成无线网络和移动设备之间的通信。 在非限制性实施例中:带宽是小区或分量载波的带宽; 作为偏移值的函数进一步定义/确定频率资源; 公共控制区域是ePDCCH,并且偏移值与用于所有其他相邻小区的所有其他ePDCCH或同一小区中的所有其他发射节点的公共控制区域的信道边缘偏移值不同; 并且频率资源包括分布在带宽上的频率的频率条带(其可以被资源元素组交织)。
    • 43. 发明申请
    • USER EQUIPMENT-INITIATED PRECODING SUBSET RESTRICTION FOR COMMUNICATION SYSTEMS
    • 用户设备启动用于通信系统的预定接收限制
    • US20110059703A1
    • 2011-03-10
    • US12680724
    • 2008-09-26
    • Klaus HuglJaakko Eero Samuli Visuri
    • Klaus HuglJaakko Eero Samuli Visuri
    • H04W88/02
    • H04B7/0417H04B7/0626H04B7/063H04B7/0632H04B7/0639H04W72/04
    • A communication system includes user equipment 460 and a base station 410. In one embodiment, the user equipment 460 includes a processor 472 with a code word subset instruction module 475 that generates a user equipment-specific code word subset instruction ΩUEI INST compatible with the user equipment 460, and a transceiver 469 that transmits the user equipment-specific code word subset instruction ΩUEI INST. The base station 410 includes a transceiver 435 that receives the user equipment-specific code word subset instruction ΩUEI INST, and a processor 440 with a code word subset restriction module 445 that generates a user equipment-specific code word subset ΩUEI as a function of the user equipment-specific code word subset instruction ΩUEI INST for transmission to the user equipment 460. The processor 440 precodes user data for transmission to the user equipment 460 via an antenna array 420 with the user equipment-specific code word subset ΩUEI.
    • 通信系统包括用户设备460和基站410.在一个实施例中,用户设备460包括具有代码字子集指令模块475的处理器472,该代码字子集指令模块475产生用户设备专用码字子集指令& 用户设备460以及发送用户设备专用码字子集指令“OHgr; UEI INST”的收发机469。 基站410包括收发器435,收发器435接收用户设备专用码字子集指令&Ogr; UEI INST,以及具有码字子集限制模块445的处理器440,该码字子集限制模块445产生用户设备专用码字子集 用户设备专用码字子集指令&OHgr; UEI INST的功能,用于传输到用户设备460.处理器440通过天线阵列420预先编码用户数据以传送给用户设备460,用户设备专用码字 子集&OHgr; UEI。
    • 46. 发明申请
    • METHOD, APPARATUS AND COMPUTER PROGRAM FOR DOWNLINK MU-MIMO POWER SETTINGS AND CONTROL
    • 用于下行MU-MIMO功率设置和控制的方法,装置和计算机程序
    • US20090318183A1
    • 2009-12-24
    • US12489862
    • 2009-06-23
    • Klaus HuglTimo E. RomanLars E. Lindh
    • Klaus HuglTimo E. RomanLars E. Lindh
    • H04B7/00H04K1/10G08C17/00
    • H04W52/143H04L5/0023H04L5/0041H04W48/08H04W52/346H04W52/36H04W52/42H04W72/0453
    • A set of J predetermined power level offsets that scale transmission power per user are stored in a local computer-readable memory. A set of N users to which are allocated overlapping downlink frequency resources are selected. From the stored set is then selected a power level offset. An indication of the selected power level offset is signaled to at least one of the N users; and the at least one of the N users are also sent a multiplexed transmission using the selected power level offset. N is an integer at least equal to two, J is an integer at least equal to two, and at least one member of the set is other than 1/n in which n is any positive integer less than Nmax in which Nmax is a maximum number of users that can be multiplexed together. Various embodiments include an apparatus such as a network access node, a method, and a stored computer program. Also detailed are apparatus and method and stored computer program for practicing the invention from the perspective of the user/UE.
    • 将每个用户的发送功率缩小的一组J个预定功率电平偏移量存储在本地计算机可读存储器中。 选择一组分配重叠的下行链路频率资源的N个用户。 然后从存储的集合中选择功率电平偏移。 所选择的功率电平偏移的指示被发送给N个用户中的至少一个; 并且N个用户中的至少一个也使用所选择的功率电平偏移发送多路传输。 N是至少等于2的整数,J是至少等于2的整数,并且该集合中的至少一个成员不是1 / n,其中n是小于Nmax的任何正整数,其中N max是最大值 可以多路复用的用户数。 各种实施例包括诸如网络接入节点,方法和存储的计算机程序的装置。 还详细描述了从用户/ UE的角度来实践本发明的装置和方法以及存储的计算机程序。
    • 47. 发明申请
    • Coordinated cyclic shift and sequence hopping for Zadoff-Chu, modified Zadoff-Chu, and block-wise spreading sequences
    • Zadoff-Chu,修改Zadoff-Chu和块式扩频序列的协调循环移位和序列跳频
    • US20080298433A1
    • 2008-12-04
    • US12150807
    • 2008-04-30
    • Esa TiirolaKari HooliKari PajukoskiKlaus Hugl
    • Esa TiirolaKari HooliKari PajukoskiKlaus Hugl
    • H04B1/00
    • H04J13/0062H04B7/0413H04J13/0074H04L5/0026H04L5/0051H04L25/0226H04L27/2613H04W72/042
    • A cyclic shift of a reference signal is quantized as a combination of a cell specific cyclic shift with an outcome of a pseudo-random hopping, and an indication of the cell specific cyclic shift is broadcast in the cell. In one embodiment the cyclic shift is quantized as a modulo operation on a sum of the cell specific cyclic shift, the outcome of the pseudo-random hopping, and a user specific cyclic shift, in which case an indication of the user specific cyclic shift is sent in an uplink resource allocation and a user sends its cyclically shifted reference signal in the uplink resource allocated by the uplink resource allocation. The cyclic shift may also be quantized according to length of the reference signal as cyclic_shift_symbol=(cyclic_shift_value*length of the reference signal)/12; where cyclic_shift_value is between zero and eleven and cyclic_shift_symbol is the amount of cyclic shift given in reference signal symbols.
    • 参考信号的循环移位被量化为小区特定循环移位与伪随机跳变的结果的组合,并且在小区中广播小区特定循环移位的指示。 在一个实施例中,循环移位被量化为对小区特定循环移位,伪随机跳跃的结果和用户特定循环移位之和的模运算,在这种情况下,用户特定循环移位的指示是 在上行链路资源分配中发送,并且用户在由上行链路资源分配分配的上行链路资源中发送其循环移位的参考信号。 循环移位也可以根据参考信号的长度量化为cyclic_shift_symbol =(cyclic_shift_value *参考信号的长度)/ 12; 其中,cyclic_shift_value在零和十一之间,而cyclic_shift_symbol是参考信号符号中给出的循环移位量。
    • 49. 发明申请
    • Delay-based cell portion selection
    • 基于延迟的单元部分选择
    • US20060203764A1
    • 2006-09-14
    • US11129473
    • 2005-05-16
    • Klaus Hugl
    • Klaus Hugl
    • H04J3/06H04Q7/24H04Q7/00
    • H04W48/20
    • The present invention relates to a method and network device for identifying a cell portion to be selected from at least two cell portions each served by at least one respective remote head, wherein respective cell-portion specific amounts of delay are allocated to each of said at least two cell portions and signals received from said at least two cell portions are delayed by the cell-portion specific amounts of delay. Cell-portion specific signals can then be separated based on their time of occurrence. Thereby, a separation in the delay domain is possible during uplink reception in order to distinguish between different cell portions to which downlink signals can then be selectively transmitted. The downlink capacity can thus be increased without requiring increase of uplink capacity and complexity at the same time.
    • 本发明涉及一种方法和网络设备,用于识别要由至少两个小区部分选择的小区部分,每个小区部分由至少一个相应的远程头部服务,其中相应的小区部分特定的延迟量被分配给每个所述的 从所述至少两个单元部分接收的至少两个单元部分和信号被延迟单元部分特定的延迟量。 然后可以基于其发生时间分离单元部分特定信号。 因此,在上行链路接收期间,延迟域中的分离是可能的,以区分可以选择性地发送下行链路信号的不同的小区部分。 因此可以增加下行链路容量,而不需要同时增加上行链路容量和复杂性。