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Space-time coded adaptive transmit antenna arrays for OFDM wireless systems utilizing channel side information

机译:利用信道侧信息的OFDM无线系统的时空编码自适应发射天线阵列

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OFDM has been widely regarded as an effective modulation technique for mitigating the effects of ISI in a frequency selective fading channel and for providing reliable high-data transmission over wireless links. Adaptive antenna arrays at the transmitter can achieve further increases in system capacity and bandwidth efficiency, as well as, in QoS improvement in conventional OFDM systems. But the performance of such of systems will severely degrade as the quality of the channel information available at the transmitter decreases. In this paper, we propose a space-time block coded adaptive transmit antenna arrays for broadband OFDM communication systems by utilizing partial channel side information. By employing space-time coding and adaptive power assignment between the sub-channels obtained by applying eigenvalue decomposition on the conditional channel correlation matrix of each sub-carrier, the proposed system combines the benefits of both space-time block coding and adaptive antenna arrays while being robust to channel imperfection. Simulation results show that the proposed system yields significant gains over conventional adaptive antenna arrays based systems without space-time coding under imperfect channel information available at the transmitter. Simulation results also show that the proposed power allocation in the frequency domain can further improve the performance of the space-time block coded adaptive transmit antenna arrays based OFDM systems.
机译:OFDM已被广泛认为是一种有效的调制技术,可减轻ISI在频率选择衰落信道中的影响,并通过无线链路提供可靠的高数据传输。发射机处的自适应天线阵列可以实现系统容量和带宽效率的进一步提高,以及传统OFDM系统中QoS的提高。但是,随着发射机处可用信道信息质量的降低,这种系统的性能将严重下降。在本文中,我们通过利用部分信道边信息,为宽带OFDM通信系统提出了一种空时分组编码的自适应发射天线阵列。通过对每个子载波的条件信道相关矩阵应用特征值分解获得的子信道之间进行空时编码和自适应功率分配,该系统结合了空时分组编码和自适应天线阵列的优点对渠道缺陷有很强的抵抗力。仿真结果表明,在发射机处可获得不完善的信道信息的情况下,所提出的系统比没有空时编码的传统基于自适应天线阵列的系统具有显着的增益。仿真结果还表明,在频域中提出的功率分配可以进一步提高基于空时分组编码的自适应发射天线阵列的OFDM系统的性能。

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