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Improved energy detector based spectrum sensing for cognitive radio: An experimental study

机译:改进的基于能量检测器的认知无线电频谱感知技术:一项实验研究

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Cognitive radio (CR) is a technology that addresses the problem of scarcity of spectrum and paves the way for efficient use of the same. In recent times, it has been observed that most research is focused on building theoretical models which are backed mostly by simulation results. In order to successfully support any theoretically developed model, it is necessary that the algorithm be tested in practical environment using hardware. Since some assumptions made to satisfy simulation requirements may not hold under practical circumstances, the implementation and testing of a theoretical concept is quite challenging. In this paper, we present experimental test results from our implementation of improved energy detector for single node and co-operative CR networks. The theoretical model is taken from [1], while GNU Radio and universal software radio peripherals 2 (USRP2) kits serve as software and hardware, respectively, in the implementation. Shadowed fading (due to obstacles and hidden node problem) makes single node sensing sometimes unreliable. Use of cooperation among secondary nodes, along with proper fusion rules, not only exploits the advantage of spatial diversity but also improves the reliability of spectrum hole sensing, as evident from the test results. It has been demonstrated by using the practical testing that cooperative sensing is better than single node sensing.
机译:认知无线电(CR)是一种解决频谱稀缺问题并为有效利用频谱铺平道路的技术。近来,已经观察到大多数研究都集中在建立理论模型上,该模型主要由仿真结果来支持。为了成功支持任何理论上开发的模型,有必要在实际环境中使用硬件对算法进行测试。由于为满足模拟要求而做出的某些假设在实际情况下可能不成立,因此理论概念的实施和测试非常具有挑战性。在本文中,我们介绍了针对单节点和协作CR网络的改进型能量检测器的实现所产生的实验测试结果。理论模型取自[1],而GNU Radio和通用软件无线电外围设备2(USRP2)套件分别在实现中充当软件和硬件。阴影褪色(由于障碍物和隐藏节点问题)使单节点感测有时不可靠。从测试结果可以明显看出,使用次级节点之间的协作以及适当的融合规则,不仅可以利用空间分集的优势,而且还可以提高频谱空穴感测的可靠性。通过实际测试已经证明,协作感测比单节点感测要好。

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