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A Low-Complexity Flexible Spectrum-Sensing Scheme for Mobile Cognitive Radio Terminals

机译:用于移动认知无线电终端的低复杂度灵活频谱感知方案

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Low-complexity and flexible spectrum sensing is one of the challenging tasks in a cognitive radio (CR). Most of the work on energy-detection-based spectrum sensing presented in the literature employ a filter bank (FB) to split the wideband input signal into several subbands and detect the spectrum by computing the energy of subbands. However, for a mobile CR handset, a filter-bank-based spectrum sensing is not an area- and power-efficient scheme. In this paper, a novel spectrum-sensing scheme based on a reconfigurable digital downconverter (RDDC) and a reconfigurable filter based on coefficient decimation is proposed for mobile CR handsets, which has very low complexity and high flexibility compared to conventional FB approaches. The basic idea is to rotate the spectrum using an RDDC and filter the desired portion of the spectrum using the reconfigurable filter, which then results in very low complexity. The implementation results on Virtex-4 field-programmable gate array show that our method offers significant reductions in gate count, power consumption, and delay over conventional discrete Fourier transform FB-based spectrum sensing.
机译:低复杂度和灵活的频谱感测是认知无线电(CR)中具有挑战性的任务之一。文献中提出的有关基于能量检测的频谱感应的大多数工作都使用滤波器组(FB)将宽带输入信号分为几个子带,并通过计算子带的能量来检测频谱。但是,对于移动CR手机,基于滤波器组的频谱感应并不是一种节省面积和功耗的方案。本文针对移动CR手机,提出了一种基于可重构数字下变频器(RDDC)和基于系数抽取的可重构滤波器的新型频谱感知方案,与传统的FB方法相比,它具有非常低的复杂度和很高的灵活性。基本思想是使用RDDC旋转频谱,并使用可重新配置的滤波器对频谱的所需部分进行滤波,从而降低了复杂度。在Virtex-4现场可编程门阵列上的实现结果表明,与传统的基于离散傅里叶变换FB的频谱检测相比,我们的方法显着减少了门数,功耗和延迟。

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