Modulation-mode assignment in SVD-assisted multiuser MIMO-OFDM systems

S. Aust, A. Ahrens, C. Benavente-Peces
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引用次数: 1

Abstract

In order to comply with the demand on increasing available data rates in particular in wireless technologies, systems with multiple transmit and receive antennas, also called MIMO (multiple-input multiple-output) systems, have become indispensable for future generations of wireless systems. Due to the strongly increasing demand in high-data rate transmission systems, frequency non-selective MIMO links have reached a state of maturity and frequency selective MIMO links are in the focus of interest. In this field, the combination of MIMO transmission and OFDM (orthogonal frequency division multiplexing) can be considered as an essential part of fulfilling the requirements of future generations of wireless systems. However, single-user scenarios have reached a state of maturity. By contrast multiple users' scenarios require substantial further research, where in comparison to ZF (zero-forcing) multiuser transmission techniques, the individual user's channel characteristics are taken into consideration in this contribution. The performed joint optimization of the number of activated MIMO layers and the number of transmitted bits per subcarrier along with the appropriate allocation of the transmit power shows that not necessarily all user-specific MIMO layers per subcarrier have to be activated in order to minimize the overall BER under the constraint of a given fixed data throughput.
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svd辅助多用户MIMO-OFDM系统中的调制模式分配
为了适应无线技术对可用数据速率不断提高的需求,具有多接收和多发射天线的系统,也称为MIMO(多输入多输出)系统,已成为未来无线系统不可缺少的一部分。由于高数据速率传输系统需求的强烈增长,频率非选择性MIMO链路已经达到成熟状态,频率选择性MIMO链路成为人们关注的焦点。在该领域,MIMO传输与OFDM(正交频分复用)的结合可以被认为是满足未来几代无线系统要求的重要组成部分。然而,单用户场景已经达到了成熟的状态。相比之下,多用户的场景需要大量的进一步研究,与ZF(零强迫)多用户传输技术相比,在此贡献中考虑了单个用户的信道特性。对激活的MIMO层数和每个子载波的传输位数以及发射功率的适当分配进行的联合优化表明,在给定固定数据吞吐量的约束下,为了最小化总体BER,不一定必须激活每个子载波的所有用户特定MIMO层。
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