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Wide-band spectrum sensing for cognitive radio by combining antenna signals

机译:通过组合天线信号进行认知无线电的宽带频谱感测

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This paper presents methods for enhancing blind spectrum sensing of wide-band signals using multiple antennas on a single cognitive receiver. Regulatory bodies in various countries have found that most radio spectrum is inefficiently utilized. Cognitive radio is a paradigm capable of utilizing bands assigned to licensed or primary users when they are not being used. A critical component of a functioning cognitive radio system is the spectrum sensing of the primary users. We present a hidden Markov model based approach to detecting wide-band signals with multiple antennas, contributing (i) simple means of combining signals across multiple antennas, namely pre-detection combining and post-detection combining, and (ii) a modified hidden Markov model algorithm to detect the interferers from the antenna-combined signals. The designs are characterized using both the dependence of missed detection and false alarm error rates on the interference-to-noise ratio (INR) and receiver operator characteristics.
机译:本文提出了在单个认知接收器上使用多个天线增强宽带信号的盲频谱感测的方法。各个国家的监管机构已经发现,大多数无线电频谱没有得到有效利用。认知无线电是一种能够在不使用许可用户或主要用户时使用分配给他们的频段的范例。运行功能的认知无线电系统的关键组成部分是主要用户的频谱感知。我们提出了一种基于隐马尔可夫模型的多天线检测宽带信号的方法,提供了(i)跨多个天线组合信号的简单方法,即预检测组合和后检测组合,以及(ii)修改后的隐马尔可夫模型从天线组合信号中检测干扰源的模型算法。利用漏检和误报错误率对干扰噪声比(INR)和接收机操作员特性的依赖性来对设计进行特征化。

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