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Effect of low-resolution ADCs and loop interference on multi-user full-duplex massive MIMO amplify-and-forward relaying systems

机译:低分辨率ADC和环路干扰对多用户全双工大规模MIMO放大转发中继系统的影响

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This paper focuses on a multi-user full-duplex massive multiple-input multiple-output amplify-and-forward relaying system with low-resolution analogue-to-digital convertors (ADCs). By modelling the loop-interference and quantisation noise as additive noise, we perform the analyses of the achievable spectral efficiency (SE) by considering the two canonical processing schemes, maximum ratio combining/maximal ratio transmission (MRC/MRT) and zero-forcing receive/zero-forcing transmission (ZFR/ZFT), respectively. Specially, we first obtain the tractable closed-form expressions of the achievable SE. Then, we present the asymptotic analyses under three different power-scaling scenarios. Comparison analysis shows that the low-resolution quantisers impose more performance loss on ZFR/ZFT schemes than MRC/MRT ones. At the same time, it is found that with different power-scaling schemes, the systems have different capabilities to restrict the effect of loop interference and low-resolution ADCs. Specially, the impact of both the loop-interference and quantisers on achievable SE can be restricted effectively only under the power-scaling scenario where the relay's transmission power is scaled down with the number of transmit antennas and the sources' transmission power is fixed. For the power-scaling case where the transmission powers of both relay and sources are scaled down simultaneously with the number of antennas, only the effect of the loop interference can be restricted, but the one of low-resolution quantisers remains.
机译:本文重点介绍具有低分辨率模数转换器(ADC)的多用户全双工大规模多输入多输出放大转发中继系统。通过将环路干扰和量化噪声建模为加性噪声,我们考虑了两种规范的处理方案,即最大比率组合/最大比率传输(MRC / MRT)和零强制接收,对可达到的频谱效率(SE)进行了分析。 /零强制传输(ZFR / ZFT)。特别地,我们首先获得可实现SE的易处理的闭合形式表达式。然后,我们介绍了三种不同功率定标情况下的渐近分析。比较分析表明,与MRC / MRT相比,低分辨率量化器对ZFR / ZFT方案的性能损失更大。同时,发现采用不同的功率缩放方案时,系统具有不同的能力来限制环路干扰和低分辨率ADC的影响。特别是,只有在功率缩放的情况下,即中继的发射功率随发射天线的数量而缩小,并且源的发射功率是固定的,才能有效地限制环路干扰和量化器对可实现SE的影响。对于功率缩放的情况,其中中继器和源的发射功率都与天线的数量同时缩小,只能限制环路干扰的影响,但仍保留低分辨率量化器之一。

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