Multiantenna spectrum sensing for Cognitive Radio: overcoming noise uncertainty

Roberto López-Valcarce, G. Vazquez-Vilar, J. Sala-Álvarez
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引用次数: 82

Abstract

Spectrum sensing is a key ingredient of the dynamic spectrum access paradigm, but it needs powerful detectors operating at SNRs well below the decodability levels of primary signals. Noise uncertainty poses a significant challenge to the development of such schemes, requiring some degree of diversity (spatial, temporal, or in distribution) for identifiability of the noise level. Multiantenna detectors exploit spatial independence of receiver thermal noise. We review this class of schemes and propose a novel detector trading off performance and complexity. However, most of these methods assume that the noise power, though unknown, is the same at all antennas. As it turns out, calibration errors have a substantial impact on these detectors. Another novel detector is proposed, based on an approximation to the Generalized Likelihood Ratio, outperforming previous schemes for uncalibrated multiantenna receivers.
认知无线电的多天线频谱传感:克服噪声不确定性
频谱感知是动态频谱接入范例的关键组成部分,但它需要在远低于主信号可解码水平的信噪比下工作的强大检测器。噪音的不确定性对这些方案的发展提出了重大挑战,需要一定程度的多样性(空间、时间或分布)来识别噪音水平。多天线探测器利用了接收机热噪声的空间独立性。我们回顾了这类方案,并提出了一种新的检测器,权衡了性能和复杂性。然而,这些方法大多假设噪声功率(虽然未知)在所有天线上是相同的。事实证明,校准误差对这些探测器有重大影响。基于广义似然比的近似,提出了另一种新型检测器,优于先前的未校准多天线接收机方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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