Transmit phase control to increase the minimum eigenvalue of the channel correlation matrix in the ETD system

R. Shimura, I. Sasase
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引用次数: 7

Abstract

For conditions under which the channel conditions between the transmitting and receiving antennas are known on the transmitter side when TDD (Time Division Duplex) is used in the MIMO (Multi-Input Multi-Output) method, much attention has been devoted to E-SDM (Eigenbeam Space Division Multiplexing), in which the influence of CCI (Co-Channel Interference) is eliminated by making the different transmission signal sequences orthogonal in space by means of the eigenvectors of the channel matrix used as the transmission and reception weights. However, in such a system as E-SDM, in which eigenvectors of the channel matrix are used, more than two antennas are needed on the receiving side in order to perform eigenvalue decomposition of the channel matrix. In this paper, in order to realize a system using the eigenvectors as the transmission and reception weights even in a system with two transmitting antennas and one receiving antenna under TDD, the ETD (Eigenbeam Transmit Diversity) system is proposed. In this system, the concept of frequency diversity is applied, in which identical signals are transmitted on two subcarriers on one transmitting antenna, so that a MIMO system is virtually realized with subcarriers of the OFDM (Orthogonal Frequency Division Multiplexing) in place of receiving antennas in the row direction of the channel matrix. In the ETD system, the minimum eigenvalue of the channel matrix can be made larger by adaptively interchanging the signals among antennas and by transmission phase control. Hence, the BER characteristics of the signal sequence by which the minimum eigenvalue is multiplied can be improved. The characteristics are evaluated by computer simulations. It is shown that the proposed system is superior in terms of BER characteristics to the transmission diversity system in which transmission phase control is carried out among the antennas. © 2007 Wiley Periodicals, Inc. Electron Comm Jpn Pt 1, 90(7): 38–51, 2007; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/ecja.20342
在ETD系统中增加信道相关矩阵最小特征值的传输相位控制
在多输入多输出(MIMO)方法中使用时分双工(TDD)时,在发射端知道发射天线和接收天线之间的信道条件下,E-SDM(特征波束空分复用)得到了广泛的关注。其中,利用信道矩阵的特征向量作为发送和接收权值,使不同的传输信号序列在空间上正交,从而消除了共信道干扰(CCI)的影响。然而,在使用信道矩阵特征向量的E-SDM系统中,为了对信道矩阵进行特征值分解,在接收侧需要两个以上的天线。在TDD条件下,为了实现以特征向量作为发射和接收权值的系统,提出了本征波束发射分集(ETD)系统。该系统采用频率分集的概念,在一个发射天线的两个子载波上传输相同的信号,从而在信道矩阵的行方向上用正交频分复用(OFDM)的子载波代替接收天线来实现MIMO系统。在ETD系统中,可以通过天线间信号的自适应交换和传输相位控制来增大信道矩阵的最小特征值。因此,可以改善乘上最小特征值的信号序列的误码率特性。通过计算机模拟对其特性进行了评价。结果表明,该系统在误码率特性方面优于在天线间进行传输相位控制的传输分集系统。©2007 Wiley期刊公司电子工程学报,2009,31 (7):393 - 398;在线发表于Wiley InterScience (www.interscience.wiley.com)。DOI 10.1002 / ecja.20342
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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