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I/Q-Imbalance Self-Interference Coordination

机译:I / Q不平衡自干扰协调

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In this paper, we present a novel low-complexity technique, which improves the performance of single-antenna multi-carrier communication systems, suffering from in-phase and quadrature (I/Q)-imbalance (IQI) at the receiver. We refer to the proposed scheme as I/Q-imbalance self-interference coordination (IQSC). This technique not only mitigates the detrimental effects of IQI, but, through appropriate signal processing, also coordinates the self-interference terms produced by IQI in order to achieve second-order frequency diversity. However, these benefits come at the expense of a reduction in transmission rate. More specifically, IQSC is a simple transmit diversity scheme that improves the signal quality at the receiver by elementary signal processing operations across symmetric (mirror) pairs of subcarriers. Thereby, the proposed transmission protocol has a similar complexity as Alamouti’s space-time block coding scheme and does not require extra transmit power nor any feedback. To evaluate the performance of IQSC, we derive closed-form expressions for the resulting outage probability and symbol-error rate. Interestingly, IQSC outperforms not only existing IQI compensation schemes but also the ideal system without IQI for the same spectral efficiency and practical target error rates, while it achieves almost the same performance as ideal (i.e., IQI-free) equal-rate repetition coding. Our findings reveal that IQSC is a promising low-complexity technique for significantly increasing the reliability of low-cost devices that suffer from high levels of IQI.
机译:在本文中,我们提出了一种新颖的低复杂度技术,该技术可改善单天线多载波通信系统的性能,使其在接收机处遭受同相和正交(I / Q)不平衡(IQI)的困扰。我们将提议的方案称为I / Q不平衡自干扰协调(IQSC)。该技术不仅减轻了IQI的有害影响,而且通过适当的信号处理,还协调了IQI产生的自干扰项,以实现二阶频率分集。但是,这些好处是以降低传输速率为代价的。更具体地说,IQSC是一种简单的发射分集方案,可通过跨对称(镜像)对副载波的基本信号处理操作来改善接收器处的信号质量。因此,提出的传输协议具有与Alamouti的时空块编码方案相似的复杂性,并且不需要额外的发射功率或任何反馈。为了评估IQSC的性能,我们针对产生的中断概率和符号错误率导出了封闭形式的表达式。有趣的是,对于相同的频谱效率和实际目标误码率,IQSC不仅优于现有的IQI补偿方案,而且还优于不具有IQI的理想系统,同时它实现了与理想(即无IQI的)等率重复编码几乎相同的性能。我们的发现表明,IQSC是一种有前途的低复杂度技术,可显着提高遭受IQI高水平影响的低成本设备的可靠性。

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