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Space-Time block coded spatial modulation aided mmWave MIMO with hybrid precoding

机译:具有混合预编码的空时分组编码空间调制辅助mmWave MIMO

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In this paper, a combination of Space-Time Block Coded Spatial Modulation with Hybrid Analog-Digital Beamforming (STBC-SM-HBF) for 60 GHz Millimeter-wave (mmWave) communications is proposed in order to take advantage of the merits of Spatial Modulation (SM), Space-Time Block Codes (STBC), Analog Beamforming (ABF), and digital precoding techniques while avoiding their drawbacks. This proposed system benefits from the multiplexing gain of SM, from the transmit diversity gain of STBC and from the Signal-to-Noise Ratio (SNR) gain of the beamformer. The simulation results demonstrate that the Zero Forcing (ZF) and the Minimum Mean Square Error (MMSE) precoded STBC-SM systems have better Bit Error Rate (BER) performance than the precoded SM system, and the former showed a performance degradation compared to STBC-SM system tough. Furthermore, the error performance is significantly improved by employing an array of ABF which improves the system performance as the number of antenna array elements increases due to providing a beamforming gain, which is hence of great significance to the Fifth Generation (5G) mmWave communications. In addition, it is demonstrated that a minimum of 2 antenna elements in the proposed scheme of STBC-SM-HBF are required to obtain better error performance than that of the conventional SM and STBC-SM systems under the same spectral efficiency of 2 bits/s/Hz.
机译:为了利用空间调制的优点,提出了将时空分组编码空间调制与混合模数波束形成(STBC-SM-HBF)结合用于60 GHz毫米波(mmWave)通信的方法。 (SM),空时分组码(STBC),模拟波束成形(ABF)和数字预编码技术,同时避免了它们的缺点。该提议的系统受益于SM的复用增益,STBC的发射分集增益以及波束形成器的信噪比(SNR)增益。仿真结果表明,预编码的零强制(ZF)和最小均方误差(MMSE)的STBC-SM系统比预编码的SM系统具有更好的误码率(BER)性能,并且前者与STBC相比性能下降。 -SM系统强悍。此外,通过使用ABF阵列显着提高了错误性能,该阵列可通过提供波束成形增益来增加天线阵列元件的数量,从而提高系统性能,因此对第五代(5G)mmWave通信具有重要意义。此外,已经证明,在相同的2bit / s频谱效率下,所建议的STBC-SM-HBF方案中至少需要2个天线元件才能获得比常规SM和STBC-SM系统更好的误码性能。 s / Hz。

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