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Optimum welch FFT segment size for duty cycle estimation in spectrum awareness system

机译:频谱感知系统中占空比优化估计的最佳Wewel FFT段大小

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In order to realize practical dynamic spectrum access (DSA), implementing spectrum sensing with reasonably low cost is very challenging due to the required detection accuracy and quickness. For this issue, we have introduced an extended DSA, smart spectrum access (SSA), where any useful information in terms of spectrum utilization, such as statistics regarding spectrum utilization, is used not only for accomplishing the requirements of spectrum sensing but also for enhancing the performance of the DSA. In this approach, obtaining the statistics of the spectrum utilization is an important issue for which we have developed a spectrum awareness system prototype. One issue in the spectrum awareness is the Welch FFT segment size design which is used for spectrum analysis. This issue involves a trade-off between the spectrum usage detection accuracy and available frequency resolution. For this issue, we derive an optimum segment size based on analysis and show that the optimum segment size depends on signal-to-measurement bandwidth ratio and duty cycle. The optimum segment size derived by the analysis is validated with numerical simulation and experimental results.
机译:为了实现实际的动态频谱访问(DSA),由于要求的检测精度和快速性,以合理的低成本实现频谱感测是非常具有挑战性的。针对此问题,我们引入了扩展的DSA,即智能频谱访问(SSA),其中任何有关频谱利用率的有用信息(例如,有关频谱利用率的统计信息)不仅用于满足频谱感知的要求,而且还可用于增强DSA的性能。在这种方法中,获得频谱利用率的统计数据是一个重要的问题,为此我们开发了频谱感知系统原型。频谱意识中的一个问题是用于频谱分析的Welch FFT段大小设计。此问题涉及频谱使用检测精度和可用频率分辨率之间的权衡。对于此问题,我们基于分析得出了最佳段大小,并表明最佳段大小取决于信号与测量带宽之比和占空比。通过数值模拟和实验结果验证了通过分析得出的最佳段大小。

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