噪声不确定条件下认知无线电的两级频谱感知

K. Srisomboon, A. Prayote, Wilaiporn Lee
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引用次数: 18

摘要

对噪声功率不确定性的鲁棒性是频谱传感技术面临的主要挑战之一。由于噪声的存在,功率的不确定性导致频谱传感技术的检测性能显著下降。本文提出了两种新的认知无线电在噪声功率不确定环境下的两级频谱感知方案。两级频谱感知技术将两种传统的频谱感知技术结合起来,利用各自的优势进行频谱感知。提出的两阶段频谱传感方案利用了ED、MME和CAV技术的优点来确定主用户的存在。在短时间内进行频谱传感,并在高信噪比条件下提供可靠的检测。MME和CAV对噪声功率不确定性具有较强的鲁棒性。由于这些技术的结合,当噪声功率存在不确定性时,所提出的方案提供了更可靠的检测。尽管该技术在两级频谱感知技术中需要最长的感知周期,但利用这段时间来保护主用户免受二次用户的有害干扰是值得的。
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Two-stage spectrum sensing for cognitive radio under noise uncertainty
The robustness to uncertainty of noise power is one of main challenges to spectrum sensing technique. Since the occurrence of noise power uncertainty causes the detection performance of spectrum sensing techniques significantly degrade. In this paper, we propose two novel schemes of two-stage spectrum sensing for cognitive radio under environment as noise power uncertainty. The two-stage spectrum sensing technique combines two conventional spectrum sensing techniques to perform spectrum sensing by exploiting their individual advantages. The proposed two-stage spectrum sensing scheme exploits the merits of ED, MME and CAV techniques to determine the existence of the primary user. The ED performs spectrum sensing within a short time and offers a reliable detection at high SNRs condition. MME and CAV are robust to noise power uncertainty. Due to the combination of these techniques, the proposed schemes offer much more reliable detection when the uncertainty of noise power occurs. Even though the proposed technique takes the longest time in sensing period among two-stage spectrum sensing techniques, it is worth using this period of time to protect the primary user from harmful interference caused by the secondary user.
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