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    • 5. 发明申请
    • Common resource signaling for multiple types of allocations
    • 用于多种类型分配的公共资源信令
    • US20100027481A1
    • 2010-02-04
    • US12228505
    • 2008-08-12
    • Lars E. LindhJussi K. OjalaFrank Frederiksen
    • Lars E. LindhJussi K. OjalaFrank Frederiksen
    • H04W72/04
    • H04L47/15H04L5/0007H04L5/0094H04L47/70
    • The exemplary embodiments of this invention provide a multi-stage approach, where, for example, one number can signal a first type of resource allocation (e.g., a consecutive allocation) or a second type of resource allocation (e.g., a best-M allocation based on best-M channel quality information). In one exemplary embodiment, a method includes: allocating a plurality of resource blocks to obtain a resource allocation; and signaling the resource allocation using an n-bit number, where the n-bit number expresses a value from an overall range of values having a first range of values and a second range of values, where a value within the first range of values specifies a first type of resource allocation and where a value within the second range of values specifies a second type of resource allocation, where the first type of resource allocation is different from the second type of resource allocation.
    • 本发明的示例性实施例提供了一种多级方法,其中,例如,一个数字可以发送第一类型的资源分配(例如,连续分配)或第二类型的资源分配(例如,最佳M分配 基于最佳M通道质量信息)。 在一个示例性实施例中,一种方法包括:分配多个资源块以获得资源分配; 以及使用n位数字来表示所述资源分配,其中所述n位数字表示来自具有所述值的第一范围和所述第二值范围的值的总范围的值,其中所述第一值范围内的值指定 第一类型的资源分配,并且其中第二值范围内的值指定第二类型的资源分配,其中第一类型的资源分配与第二类型的资源分配不同。
    • 6. 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)。