基于特征值的多通道频谱感知中射频IQ不平衡的分析与缓解

A. Gokceoglu, S. Dikmese, M. Valkama, M. Renfors
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引用次数: 10

摘要

直接转换无线电接收机可以为认知无线电(CR)设备提供高度集成和低成本的硬件解决方案。然而,这种接收器结构也受到各种RF电路缺陷的影响,特别是IQ不平衡。在研究各种频谱传感方法的性能时,现有的文献大多忽略了这种射频缺陷的影响。在本文中,我们分析了一种众所周知的基于特征值的传感方法,即最大到最小特征值测试,在具有挑战性的多通道频谱传感环境下,在传感接收机射频智商不平衡的情况下的性能。分析表明,在射频IQ不平衡的情况下,频谱传感器的虚警概率始终高于理想的射频前端情况。然后,为了弥补这种识别自由频谱能力的下降,部署了波形级干扰抵消方案以提高性能,并制定了最佳抵消系数和实用的样本估计器。大量的计算机模拟说明了在实际的IQ不平衡值存在的情况下,虚警概率的降低。仿真结果还表明,该干扰消除方法能有效抑制IQ不平衡效应,实现与理想射频前端情况相同的虚警概率。
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Analysis and mitigation of RF IQ imbalance in eigenvalue based multichannel spectrum sensing
Direct-conversion radio receivers can provide highly-integrated and low-cost hardware solutions for cognitive radio (CR) devices. However, such receiver structures are also known to suffer from various RF circuit imperfections, especially IQ imbalance. When studying the performance of various spectrum sensing methods, most existing work in literature neglect the effects of such RF imperfections. In this paper, we analyze the performance of a well-known eigenvalue based sensing method, namely maximum-to-minimum eigenvalue test, in the challenging multichannel spectrum sensing context under sensing receiver RF IQ imbalance. It is analytically shown that under RF IQ imbalance, the false alarm probability of the spectrum sensor is always higher compared to ideal RF front-end case. Then, in order to compensate for such degradation in the ability to identify free spectrum, a waveform level interference cancellation solution is deployed to enhance the performance, and optimum cancellation coefficient together with a practical sample estimator are formulated. Extensive computer simulations are provided to illustrate the degradation of false alarm probability in the presence of practical IQ imbalance values. Furthermore, the simulations also show that the proposed interference cancellation method can efficiently suppress the IQ imbalance effects, achieving identical false alarm probability with the ideal RF front-end case.
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