低信噪比噪声不确定性下改进能量检测的实验性能评价

Bansi Gajera, Dhaval K. Patel, Brijesh Soni, M. López-Benítez
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引用次数: 4

摘要

改进的能量检测(IED)由于考虑了过去样本的统计量而优于经典的能量检测(CED)。然而,对噪声的不完全了解(即噪声不确定性)对传感方案的性能造成了根本性的限制。在低信噪比条件下,NU容易降低检测性能。本文基于实验装置捕获的无线电技术的经验频谱数据,对低信噪比条件下IED的噪声功率不确定性分析进行了验证。得到的结果表明,在NU存在的情况下,IED优于CED,但代价是计算时间的名义增加。在1 dB NU、2 dB NU和3 dB NU下,使用IED在CED上的检测性能分别提高23.2%、14.13%和16.67%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Performance Evaluation of Improved Energy Detection under Noise Uncertainty in Low SNR Regime
Improved energy detection (IED) outperforms classical energy detection (CED) as it takes into consideration the statistics of past samples. However, imperfect knowledge of the noise referred to as noise uncertainty (NU) imposes fundamental limitation on the performance of the sensing scheme. NU is prone to degrade the detection performance particularly in the low signal to noise ratio (SNR) regime. In this paper, the analysis of IED under noise power uncertainty in low SNR regime is carried out validated based on the empirical spectrum data of the radio technologies captured using the experimental setup. Obtained results demonstrate that IED outperforms CED in presence of NU, at the cost of nominal increase in the computational time. A gain of 23.2% in the detection performance is observed while using IED over CED at 1 dB NU, 14.13% at 2 dB NU and 16.67% at 3 dB NU.
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