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Modeling of massive MIMO transceiver antenna for full-duplex single-channel system (in case of self interference effect)

机译:用于全双工单通道系统的大型MIMO收发器天线建模(在自干扰效应的情况下)

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Massive MIMO technology can increase capacity, data rate, and link reliability significantly without additional bandwidth or transmission power. Most of the previous study on Massive MIMO systems are using low frequency (2.6 GHz). This frequency is not suitable for future broadband technology, because IoT devices will use high frequency and possible cell coverage would be smaller. This work proposes Massive MIMO transceiver antenna that can be implemented in high frequency (60 GHz). This system provides broadband wireless communication which gives high capacity, high data rate and wide bandwidth. In this works the number of antennas is 64×64. Antennas can be set adaptively to capacity. In this case all of the antennas as a receiver are functioned to get redundancies and 32 antennas as transmitter adjusted to the required capacity. Configuration of antenna has been set to eliminate the mutual coupling effect. The system utilizes full duplex single channel (FDSC) which use the same frequency and time to transmit and receive data. In FDSC, bandwidth can be minimized, but self interference effect appeared and disturbing the system performance of Massive MIMO. The effect of self interference for Massive MIMO transceiver antenna simulated from 10% to 100%. The proposed system provides the channel capacity ≈ 390 bits/s/Hz or ≈ 39× spectral efficiency of SISO system. The simulation result shows that mutual coupling effect ≈ 0. The Massive MIMO have a tolerance of 20% self interference effect, however it could decrease 20% channel capacity as well.
机译:大规模MIMO技术可以显着提高容量,数据速率和链路可靠性,而无需额外的带宽或传输功率。先前有关Massive MIMO系统的大​​多数研究都使用低频(2.6 GHz)。此频率不适用于未来的宽带技术,因为物联网设备将使用高频,并且可能的小区覆盖范围会更小。这项工作提出了可以在高频(60 GHz)中实现的Massive MIMO收发器天线。该系统提供宽带无线通信,可提供高容量,高数据速率和宽带宽。在这个作品中,天线的数量为64×64。天线可以根据容量进行自适应设置。在这种情况下,作为接收器的所有天线均具有冗余功能,而作为发射器的32根天线可调整至所需容量。已设置天线配置以消除相互耦合效应。该系统利用全双工单通道(FDSC),它使用相同的频率和时间来发送和接收数据。在FDSC中,带宽可以最小化,但是出现了自干扰效应,并且干扰了Massive MIMO的系统性能。从10%到100%模拟的Massive MIMO收发器天线的自干扰影响。所提出的系统提供SISO系统的信道容量≈390位/ s / Hz或≈39倍频谱效率。仿真结果表明,互耦效应≈0。Massive MIMO具有20%的自干扰​​效应容忍度,但也会降低20%的信道容量。

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