...
首页> 外文期刊>IEICE Transactions on Communications >Single-Carrier Based Multiplexing of Layer 1/Layer 2 Control Signals in Evolved UTRA Uplink Using DFT-Spread OFDM
【24h】

Single-Carrier Based Multiplexing of Layer 1/Layer 2 Control Signals in Evolved UTRA Uplink Using DFT-Spread OFDM

机译:使用DFT扩频OFDM在演进的UTRA上行链路中基于单载波的第1层/第2层控制信号的复用

获取原文
获取原文并翻译 | 示例
           

摘要

This paper proposes efficient single-carrier (SC) based multiplexing schemes for Layer 1 (L1)/Layer 2 (L2) control signals in SC-FDMA radio access using DFT-Spread OFDM in the Evolved UTRA uplink. L1/L2 control signals are necessary for key packet access techniques such as downlink scheduling, link adaptation, hybrid automatic repeat request (ARQ) with soft combining, and for uplink feedback control signals. We first propose a SC-based multiplexing scheme for L1/L2 control signals within a shared data channel for a set of user equipment (UE) that transmits both an uplink shared data channel and L1/L2 control signals within the same subframe. We also propose a multiplexing scheme for L1/L2 control signals without uplink data transmission that takes advantage of intra-subframe frequency hopping (FH) using multiple exclusively-assigned time-frequency resource blocks (RBs) to obtain a frequency diversity gain. Furthermore, we propose an orthogonal CDMA-based multiplexing scheme using cyclic shifts of a constant amplitude zero auto-correlation (CAZAC) sequence for L1/L2 control signals from different UEs within the same narrowband time-frequency RB. Computer simulation results show that the proposed SC-based multiplexing scheme for the L1/L2 control signals within the shared data channel achieves a higher user throughput than a multicarrier-based multiplexing scheme. The results also show that the proposed multiplexing scheme for the L1/L2 control signals that takes advantage of the intra-subframe FH for the UE without uplink data transmission achieves high quality reception through large frequency diversity gain. Furthermore, we show that the proposed cyclic-shift based orthogonal CDMA multiplexing is effective in the multiplexing of multiple L1/L2 control signals from different UEs within the same RB.
机译:本文针对在演进的UTRA上行链路中使用DFT扩频OFDM的SC-FDMA无线接入中的第1层(L1)/第2层(L2)控制信号提出了基于有效单载波(SC)的复用方案。 L1 / L2控制信号对于诸如下行链路调度,链路自适应,具有软合并功能的混合自动重发请求(ARQ)等关键数据包访问技术以及上行链路反馈控制信号都是必需的。我们首先针对用户设备(UE)的一组共享数据信道中的L1 / L2控制信号提出一种基于SC的复用方案,该设备在同一子帧内同时发送上行链路共享数据信道和L1 / L2控制信号。我们还提出了一种无需上行数据传输的L1 / L2控制信号的复用方案,该方案利用子帧内跳频(FH)的优势,使用多个专门分配的时频资源块(RB)获得频率分集增益。此外,我们提出了一个基于正交CDMA的复用方案,该方案使用恒定幅度零自相关(CAZAC)序列的循环移位,用于来自相同窄带时频RB中不同UE的L1 / L2控制信号。计算机仿真结果表明,与基于多载波的复用方案相比,针对共享数据信道内L1 / L2控制信号的基于SC的复用方案可实现更高的用户吞吐量。结果还表明,针对UE的子帧内FH而无需上行链路数据传输的L1 / L2控制信号的提议复用方案通过大的频率分集增益实现了高质量的接收。此外,我们表明,提出的基于循环移位的正交CDMA多路复用在来自同一RB内来自不同UE的多个L1 / L2控制信号的多路复用中有效。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号