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Sequential Cooperative Spectrum Sensing Technique in Time Varying Channel

机译:时变信道中的顺序合作频谱感知技术

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Cognitive radio opportunistically accesses the spectrum while the licensed user is idle. A spectrum sensing procedure to monitor primary users' existence is therefore vital to cognitive radios. In this paper, we investigate the energy detection based sequential cooperative spectrum sensing technique in time varying channels. By utilizing past local observations from previous sensing slots, cognitive radio nodes can aggregate the current and previously received energy values to improve the detection performance. We propose the weighted sequential energy detector (SED) in which a fixed number of past observations are taken for decision making. In addition, we propose two adaptive schemes, namely the Two-Stage SED and the Differential SED, where a cognitive radio user uses previously received energy values until it detects a change in primary user's activity. The probability of false alarm and detection for the Weighted SED and Two-Stage SED schemes are derived. The results show that the proposed schemes achieve better detection performance over the conventional cooperative energy detection technique. In particular, the Two-Stage SED and Differential SED schemes can satisfy the IEEE 802.22 standard's requirement of 10% false alarm and 90% detection in scenarios that conventional techniques cannot accommodate.
机译:当许可用户空闲时,认知无线电机会性地访问频谱。因此,监视主要用户的频谱检测程序对于认知无线电至关重要。本文研究时变信道中基于能量检测的顺序协作频谱感知技术。通过利用来自先前感测时隙的过去的局部观察,认知无线电节点可以汇总当前和先前接收的能量值以改善检测性能。我们提出了加权顺序能量检测器(SED),其中采用了固定数量的过去观测值进行决策。此外,我们提出了两种自适应方案,即两阶段SED和差分SED,其中认知无线电用户使用先前接收的能量值,直到它检测到主要用户活动的变化。推导了加权SED和两阶段SED方案的误报和检测概率。结果表明,与传统的协同能量检测技术相比,所提方案具有更好的检测性能。特别是,两阶段SED和差分SED方案可以满足IEEE 802.22标准在传统技术无法适应的情况下10%虚警和90%检测的要求。

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