动态频谱接入中能量平均检测与最大值检测的比较

J. Boksiner, S. Dehnie
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引用次数: 8

摘要

机会动态频谱接入(DSA)系统正在成为使美国国防部(DoD)满足其电磁频谱接入技术要求的关键。DSA的主要目标之一是保护现有频谱用户免受DSA发射器可能造成的干扰。实现这一目标的方法之一是通过频谱传感,使DSA系统能够检测来自其他频谱用户的发射。一种简单实用的频谱感知方法是能量感知,它根据给定带宽信道中的总信号能量来检测其他用户。在本文中,我们的目标是研究使用两种方法对恒定和随机功率信号的能量传感性能。过去广泛研究的第一种方法使用整个信号带宽上的总能量或等效平均功率作为检测在位信号的基础。第二种方法需要用于宽带信号,如果现有信号的带宽未知,则使用单个FFT箱中的信号能量作为检测的基础。我们在Neyman-Pearson准则下检验了这些检测方法的性能,并利用Chernoff-Stein引理得到了可实现的检测概率作为检测延迟的函数。我们发现对整个信号使用平均值的方法比使用单个箱子值的方法获得更好的性能。这表明可以表示为无线电策略的先验知识对于使DSA与现有系统共存的重要性。
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Comparison of energy detection using averaging and maximum values detection for dynamic spectrum access
Opportunistic Dynamic Spectrum Access (DSA) systems are emerging as a key to enable the Department of Defense (DoD) to meet its technology requirements for access to the electromagnetic spectrum. One of the main goals of DSA is to protect incumbent spectrum users from interference that could be caused by DSA emitters. One of the ways to accomplish this is through spectrum sensing as means to enable the DSA system to detect the presence of emissions from other spectrum users. A simple and practical approach to spectrum sensing is energy sensing that detects other users on the basis of the total signal energy in channel of a given bandwidth. In this paper our goal is to investigate the performance of energy sensing for constant and random power signals using two approaches. The first approach that has been investigated extensively in the past uses the total energy, or equivalent average power, over the entire signal bandwidth as the basis for detecting incumbent signals. The second approach, which needs to be used for wideband signals if the bandwidth of the incumbent signal is not known, uses signal energy in individual FFT bins as the basis for detection. We examine the performance of these detection approach under the Neyman-Pearson criterion and also using the Chernoff-Stein Lemma to obtain the achievable detection probability as a function of detection delay. We find that the method using average over the entire signal achieves better performance than the method that uses values of individual bins. This shows the importance of prior knowledge that can be expressed as radio policy to enable coexistence of DSA with incumbent systems.
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