具有射频损伤的亚太赫兹信道下无线太比特系统的广义空间调制

Majed Saad, F. Bader, A. Ghouwayel, Hussein Hijazi, Nizar Bouhel, J. Palicot
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引用次数: 10

摘要

在亚太赫兹(sub-THz)频段上采用指数调制(IM)的多输入多输出(MIMO)技术为设计新的无线超高数据速率系统提供了一种很有前途的解决方案。然而,在次太赫兹频段上的系统设计受到许多技术限制和严重的rf损伤,例如低输出功率,高速低功率模数转换器的有限分辨率以及本振(LO)引入的重要相位噪声(PN)。本文从不同的角度比较了广义空间调制(GSM)的不同调制方案,同时考虑了亚太赫兹的干扰。在亚太赫兹信道中,采用均匀线性和矩形天线阵列,研究了PN对这些调制方案的影响。结果表明,与GSM系统相比,QPSK-GSM系统是与其他多种调制方案(如PSK、DPSK、QAM、PAM)的最佳组合。与12bpcu的DQPSK-GSM和4PAM-GSM相比,相同数量的接收和激活发射天线,QPSK-GSM系统提供从3.4 dB到5 dB的增益范围。结果表明,在不进行相位噪声抑制的情况下,GSM-QPSK在分布式振荡器结构中可以容忍低到中等的剩余PN。因此,强制GSM成为亚太赫兹波段超高无线数据速率通信的一个有前途的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generalized Spatial Modulation for Wireless Terabits Systems Under Sub-THZ Channel With RF Impairments
Multiple-Input Multiple-Output (MIMO) technique with Index Modulation (IM) over sub-TeraHertz (sub-THz) bands represent a promising solution to design new wireless ultrahigh data rate systems. However, the system design over sub-THz bands suffers from many technological limitations and severe RF-impairments such as low output power, limited resolution of high-speed low-power Analog-to-Digital Converters and important Phase Noise (PN) introduced by the Local Oscillator (LO). In this paper, different modulations schemes with Generalized Spatial Modulation (GSM) are compared from different perspectives while considering the sub-THz impairments. The effect of PN has been investigated for these modulation schemes in sub-THz channels using uniform linear and rectangular antenna arrays. The obtained results reveal that QPSK-GSM system is the best combination compared to GSM systems with any other Mary modulation scheme (e.g. PSK, DPSK, QAM, PAM). Compared to DQPSK-GSM and 4PAM-GSM at 12bpcu, same number of receive and activated transmit antennas, the QPSK-GSM system offers a gain ranging from 3.4 dB up to 5 dB. The results reveals that low to medium residual PN in distributed oscillator architecture can be tolerated when using GSM-QPSK without phase noise mitigation. Thus, enforcing the GSM to be a promising candidate for ultra-high wireless data rate communication in sub-THz bands.
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