认知无线电网络中的移动感知传感能力

L. Paura, Roberto Savoia
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引用次数: 7

摘要

本文研究了在移动主用户(PU)网络场景下,感知精度对认知用户(CU)可实现传输容量的影响。为此,首先,扩展了时空频谱感知模型,以考虑影响发现空间机会数量的PU迁移率效应。然后,介绍了认知无线电网络的一种新的性能指标,即移动感知感知能力。它衡量的是在具有现实感知检测能力的移动PU网络场景下,即感知决策不完善的情况下,CU所能达到的实际传输容量。性能评估突出了感知精度对信道接入概率的影响;特别是,它揭示了存在一个最优的传感时间值,使移动感知传感使能能力最大化,这取决于传感和移动参数。
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Mobility-aware sensing enabled capacity in Cognitive Radio networks
In this paper, the impact of the sensing accuracy on the transmission capacity achievable by the cognitive user (CU) is studied in a mobile primary-user (PU) network scenario. To this aim, first of all, the spatial-temporal spectrum sensing model is extended to account for the PU mobility effects that influence the number of discovered spatial opportunities. Then, a new performance metric for Cognitive Radio networks, referred to as mobility-aware sensing enabled capacity, is introduced. It measures the actual transmission capacity achievable by the CU in a mobile PU network scenario with a realistic sensing detection capability, namely in the presence of imperfect sensing decisions. The performance assessment highlights the impact of the sensing accuracy on the channel access probability; in particular, it reveals the existence of an optimal sensing time value that maximizes the mobility-aware sensing enabled capacity, which depends on sensing and mobility parameters.
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