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Tenth Order Envelope Moment Based SNR Estimation Technique Using Newton-Raphson Method for AWGN and Rician Channels

机译:基于牛顿-拉夫森法的AWGN和Rician信道的基于十阶包络矩的SNR估计技术

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摘要

The Signal to noise ratio (SNR) estimation plays an important role in improving performance of adaptive wireless communication systems as well as software defined radio (SDR) or cognitive radio receivers in the future. SNR information can help in changing modulation schemes at the transmitter and also use different demodulation algorithms at the receiver to enhance performance and provide channel quality information required for handoff, power control and channel assignment algorithms. In this paper we propose and study a 10 order non data aided (NDA) moment based SNR estimation technique for QAM modulated signals over AWGN and Rician channel models. We use Newton-Raphson method for finding SNR from the resulting 5 order polynomial. This approach is more efficient than directly finding roots or use of look up tables considered in the literature and reduces computational and memory complexity considerably for even low order moment based methods proposed in the literature. We analyze the performance of the proposed estimator for QAM and PSK signals and compare with SNR estimation based on fourth order, sixth order and eighth order moments for AWGN as well as Rician channel models. Our simulation results show that the moment based SNR estimators work well for low SNR values that are of interest in communication system design.
机译:信噪比(SNR)估计在将来改善自适应无线通信系统以及软件定义的无线电(SDR)或认知无线电接收机的性能方面起着重要作用。 SNR信息可以帮助更改发送器处的调制方案,还可以在接收器处使用不同的解调算法来增强性能,并提供切换,功率控制和信道分配算法所需的信道质量信息。在本文中,我们提出并研究了一种基于10阶无数据辅助(NDA)矩的SNR估计技术,用于基于AWGN和Rician信道模型的QAM调制信号。我们使用Newton-Raphson方法从所得的5阶多项式中找到SNR。这种方法比直接寻找根源或使用文献中考虑的查找表更有效,并且即使文献中提出的基于低阶矩的方法也大大降低了计算和存储复杂性。我们分析了拟议的QAM和PSK信号估计器的性能,并与基于AWGN的四阶,六阶和八阶矩以及Rician信道模型的SNR估计进行了比较。我们的仿真结果表明,基于矩的SNR估计器可在通信系统设计中关注的低SNR值下很好地工作。

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