标题: | 第五代巨量天线径分多重接取蜂巢式系统中使用通用滤波多载波调变及其同步方法之研究 A Study on UFMC and Synchronization for 5G Massive Antenna MDMA Cellular System |
作者: | 何家豪 黄家齐 Ho, Ka-Hou Huang, Chia-Chi 电信工程研究所 |
关键字: | 第五代;同步;通用滤波多载波;5G;Synchronization;UFMC |
公开日期: | 2017 |
摘要: | 在这篇论文中,我们研究了在第五代巨量天线径分多重接取蜂巢式系统下行传输中使用通用滤波多载波调变及其同步方法。在我们的系统中,我们使用多载波调变技术去传送用户的资料。正交频分多工是其中一种多载波调变,不过它有一个缺点是有很高的频带外功率。通用滤波多载波作为一种新兴的多载波调变技术,比起正交频分多工它可以很有效的压制频带外功率。另外,多载波传输会对时间和频率的同步非常敏感。在我们系统的上行传输中,领航序列可以用来执行同步。不过在下行传输中,因为没有传送领航序列,所以我们只能根据接收讯号的统计特性来进行同步估计。在一般的正交频分多工系统中会使用循环前缀,而循环前缀可以用来执行粗略同步。然而,我们提出了在通用滤波多载波系统中,没有循环前缀的粗略同步方法。另外,为了可以正确解调讯号,我们还提出了细符元时间的估计方法。 In this thesis, we studied and investigated the synchronization procedure for universal filtered multi-carrier (UFMC) in our proposed 5G massive antenna multipath division multiple access (MDMA) cellular system of downlink transmission. In our system, we consider multicarrier modulation to transmitted traffic data. One of the multicarrier scheme is OFDM, which has the problem of high out-of-band power. UFMC is a novel multicarrier transmission scheme, and it can suppress out-of-band power effectively as compared to OFDM system. In addition, multicarrier schemes are sensitive to time-frequency synchronization. In uplink transmission, pilot sequence can be used for synchronization. However, in downlink transmission, there is no pilot sequence and blind synchronization is need. In CP-OFDM system, CP can be used to execute the coarse synchronization. For UFMC, we proposed the coarse synchronization method which does not require the CP. Also, a fine symbol timing estimation method is proposed to obtain accurate time synchronization to demodulate signal correctly. |
URI: | http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070460297 http://hdl.handle.net/11536/141623 |
显示于类别: | Thesis |