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An energy-saving spectrum sensing processor based on partial discrete wavelet packet transform

机译:基于部分离散小波包变换的节能频谱感知处理器

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Cognitive radio draws lots of research attentions in recent years for its efficient spectrum utilization. This research proposes a discrete wavelet packet transform (DWPT)-based spectrum sensing processor for cognitive radio systems. In this processor, this study proposes a partial DWPT spectrum analyzer and a double-threshold energy detection and decision result prediction technique to reduce the computational complexity. Complexity analysis shows that the proposed spectrum sensing processor saves at most 62% computational cost compared to the traditional FFT processor. VLSI implementation results also show that the proposed architecture saves about 40% energy dissipation for the IEEE 802.22 WRAN system.
机译:认知无线电由于其有效的频谱利用而在近年来引起了很多研究关注。这项研究提出了一种基于离散小波包变换(DWPT)的认知无线电系统频谱感知处理器。在这种处理器中,本研究提出了一种部分DWPT频谱分析仪以及一种双阈值能量检测和决策结果预测技术,以降低计算复杂度。复杂度分析表明,与传统的FFT处理器相比,拟议的频谱感应处理器最多可节省62%的计算成本。 VLSI的实施结果还表明,所提出的体系结构可为IEEE 802.22 WRAN系统节省大约40%的能耗。

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