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Error vector magnitude to SNR conversion for nondata-aided receivers

机译:非数据辅助接收机的误差矢量幅度到SNR的转换

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摘要

Error vector magnitude (EVM) is one of the widely accepted figure of merits used to evaluate the quality of communication systems. In the literature, EVM has been related to signalto- noise ratio (SNR) for data-aided receivers, where preamble sequences or pilots are used to measure the EVM, or under the assumption of high SNR values. In this paper, this relation is examined for nondata-aided receivers and is shown to perform poorly, especially for low SNR values or high modulation orders. The EVM for nondata-aided receivers is then evaluated and its value is related to the SNR for quadrature amplitude modulation (QAM) and pulse amplitude modulation (PAM) signals over additive white Gaussian noise (AWGN) channels and Rayleigh fading channels, and for systems with IQ imbalances. The results show that derived equations can be used to reliably estimate SNR values using EVM measurements that are made based on detected data symbols. Thus, presented work can be quite useful for measurement devices such as vector signal analyzers (VSA), where EVM measurements are readily available.
机译:误差矢量幅度(EVM)是一种用于评估通信系统质量的优劣指标。在文献中,EVM与数据辅助接收器的信噪比(SNR)相关,其中前导序列或导频用于测量EVM,或者在高SNR值的假设下。在本文中,对非数据辅助接收器检查了这种关系,并证明了这种关系的性能较差,特别是对于低SNR值或高调制阶数。然后评估非数据辅助接收机的EVM,并将其值与加性高斯白噪声(AWGN)信道和瑞利衰落信道以及系统上的正交幅度调制(QAM)和脉冲幅度调制(PAM)信号的SNR相关。智商不平衡。结果表明,使用基于检测到的数据符号进行的EVM测量,可以使用导出的方程式可靠地估计SNR值。因此,提出的工作对于矢量信号分析仪(VSA)等测量设备非常有用,在这些设备中,EVM测量很容易获得。

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