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A Short Sensing-Time Cyclostationary Feature Detection Based Spectrum Sensor for Cognitive Radio Network

机译:基于短时循环平稳特性检测的认知无线电网络频谱传感器

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摘要

This paper proposes cyclostationary feature detection (CFD) based spectrum sensor for cognitive radio technology that consumes lower hardware resources and delivers shorter sensing time. We have addressed the challenge of efficiently implementing complex frequency-domain based CFD spectrum-sensing algorithm. Specifically, VLSI-architecture of 2048-point FFT module has been multi-level resource shared for the optimization. In addition, performance analyses results of our spectrum sensor are presented for 1024, 2048 and 4096 point FFT sizes where the proposed design delivered adequate detection-probability of 0.9 at −5 dB of SNR. This spectrum sensor is FPGA implemented and it showed that the hardware utilization has been improved due to 100% reduction in memory requirement and has archived a shorter sensing time of 0.4 ms which is 12.5× lesser compared to the state-of-the-art work.
机译:本文提出了一种基于循环平稳特征检测(CFD)的频谱传感器,用于认知无线电技术,该技术消耗的硬件资源更少,检测时间更短。我们已经解决了有效实现基于复杂频域的CFD频谱传感算法的挑战。具体来说,2048点FFT模块的VLSI体系结构已被共享用于优化的多级资源。此外,我们的频谱传感器的性能分析结果针对1024、2048和4096点FFT大小给出,其中建议的设计在-5 dB SNR时具有0.9的足够检测概率。该频谱传感器是通过FPGA实现的,表明由于减少了100%的内存需求,硬件利用率得到了提高,并且归档的感测时间更短,为0.4毫秒,与最新技术相比,缩短了12.5倍。

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