Random access method and signalling method for the same
    11.
    发明授权
    Random access method and signalling method for the same 有权
    随机访问方法和信令方法相同

    公开(公告)号:US09088993B2

    公开(公告)日:2015-07-21

    申请号:US14480356

    申请日:2014-09-08

    Abstract: A method is described for a specific user equipment (UE) to perform a random access to a Node-B within a cell in which a plurality of UEs are located together. The method includes receiving system information for at least one of a basic sequence index and a length of a zero correlation zone (ZCZ) from the Node-B, and transmitting a preamble sequence to the Node-B over a random access channel. The preamble sequence is generated from constant amplitude zero auto-correlation (CAZAC) sequences distinguishable by at least one of the basic sequence index and a length of a cyclic shift (CS) applied to the preamble sequence. The length of the CS applied to the preamble sequence is given by one among a plurality of application lengths determined based on the length of the ZCZ, wherein a number of the plurality of lengths are differently given based on a type of the specific UE, and wherein the system information is the same for all the UEs within the cell regardless of the types of UEs.

    Abstract translation: 描述了一种用于特定用户设备(UE)对多个UE位于一起的小区内的节点B进行随机接入的方法。 所述方法包括从节点B接收基本序列索引和零相关区域(ZCZ)的长度中的至少一个的系统信息,以及通过随机接入信道将前导码序列发送到节点B。 从通过基本序列索引和应用于前导序列的循环移位(CS)的长度中的至少一个可以区分的恒定幅度零自相关(CAZAC)序列生成前导码序列。 应用于前导序列的CS的长度由基于ZCZ的长度确定的多个应用长度之一给出,其中基于特定UE的类型不同地给出多个长度的数量,以及 其中系统信息对于小区内的所有UE是相同的,而与UE的类型无关。

    Sequence generation and transmission method based on time and frequency domain transmission unit

    公开(公告)号:US10715299B2

    公开(公告)日:2020-07-14

    申请号:US16252490

    申请日:2019-01-18

    Abstract: A method and a user equipment for transmitting control information in a communication system are discussed. The method according to an embodiment includes multiplying a transmission information symbol s for the control information by a frequency direction sequence c(k) to generate a first output sequence s(k), where s(k)=s*c(k), k=0, . . . , Nk−1, and Nk corresponds to a number of subcarriers included in a resource block allocated for an uplink control channel; multiplying the first output sequence s(k) by a time direction sequence x(n) to generate a second output sequence s(k, n), where s(k, n)=s(k)*x(n), n=0, . . . , Nn−1, and Nn corresponds to a number of symbols used for transmission of the control information in a transmission time interval; and transmitting the second output sequence s(k, n) through the uplink control channel in the transmission time interval.

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