首页> 外文期刊>Wireless Communications, IEEE Transactions on >Trellis-Extended Codebooks and Successive Phase Adjustment: A Path From LTE-Advanced to FDD Massive MIMO Systems
【24h】

Trellis-Extended Codebooks and Successive Phase Adjustment: A Path From LTE-Advanced to FDD Massive MIMO Systems

机译:网格扩展码本和连续相位调整:从高级LTE到FDD大规模MIMO系统的路径

获取原文
获取原文并翻译 | 示例
           

摘要

It is of great interest to develop efficient ways to acquire accurate channel state information (CSI) for massive multiple-input–multiple-output (MIMO) systems using frequency division duplexing (FDD). It is theoretically well known that the codebook size (in bits) for CSI quantization should be increased as the number of transmit antennas becomes larger, and 3GPP Long Term Evolution (LTE) and LTE-Advanced codebooks have sizes that scale according to this rule. It is hard to apply the conventional approach of using unstructured and predefined vector quantization codebooks for CSI quantization in massive MIMO because of the codeword search complexity. In this paper, we propose a trellis-extended codebook (TEC) that can be easily harmonized with current wireless standards, such as LTE or LTE-Advanced, because it can allow standardized codebooks designed for two, four, or eight antennas to be extended to larger arrays by using a trellis structure. TEC exploits a Viterbi decoder for CSI quantization and a convolutional encoder for CSI reconstruction. By quantizing multiple channel entries simultaneously using standardized codebooks in a state transition of a trellis search, TEC can achieve a fractional number of bits per channel entry quantization and a practical feedback overhead. Thus, TEC can solve both the complexity and the feedback overhead issues of CSI quantization in massive MIMO systems. We also develop trellis-extended successive phase adjustment (TE-SPA), which works as a differential codebook for TEC. This is similar to the dual codebook concept of LTE-Advanced. TE-SPA can reduce CSI quantization error with lower feedback overhead in temporally and spatially correlated channels. Numerical results verify the effectiveness of the proposed schemes in FDD massive MIMO systems.
机译:对于使用频分双工(FDD)的大型多输入多输出(MIMO)系统,开发有效的方法来获取准确的信道状态信息(CSI)极为感兴趣。理论上众所周知,随着发射天线数量的增加,用于CSI量化的码本大小(以位为单位)应增加,并且3GPP长期演进(LTE)和LTE-Advanced码本的大小可根据此规则进行缩放。由于码字搜索的复杂性,很难将使用非结构化和预定义的矢量量化码本的传统方法应用于大规模MIMO中的CSI量化。在本文中,我们提出了一种网格扩展码本(TEC),可以轻松地与当前的无线标准(例如LTE或LTE-Advanced)相协调,因为它可以扩展为两个,四个或八个天线设计的标准化码本。通过使用网格结构将其扩展为更大的数组。 TEC利用Viterbi解码器进行CSI量化,并使用卷积编码器进行CSI重建。通过在网格搜索的状态转换中使用标准化码本同时量化多个通道条目,TEC可以实现每个通道条目量化的分数位数和实际的反馈开销。因此,TEC可以解决大规模MIMO系统中CSI量化的复杂性和反馈开销问题。我们还开发了网格扩展的连续相位调整(TE-SPA),可作为TEC的差分码本。这类似于LTE-Advanced的双码本概念。 TE-SPA可以在时空相关的信道中以较低的反馈开销减少CSI量化误差。数值结果验证了该方案在FDD大规模MIMO系统中的有效性。

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