Sense-and-predict: Opportunistic MAC based on spatial interference correlation for cognitive radio networks

Jeemin Kim, Seung-Woo Ko, Han Cha, Seong-Lyun Kim
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引用次数: 13

Abstract

Opportunity detection at secondary transmitters (TXs) is a key technique enabling cognitive radio (CR) networks. Such detection however cannot guarantee reliable communication at secondary receivers (RXs), especially when their association distance is long. To cope with the issue, this paper proposes a novel MAC called sense-and-predict (SaP), where each secondary TX decides whether to access or not based on the prediction of the interference level at RX. Firstly, we provide the spatial interference correlation in a probabilistic form using stochastic geometry, and utilize it to maximize the area spectral efficiency (ASE) for secondary networks while guaranteeing the service quality of primary networks. Through simulations and testbed experiments using USRP, SaP is shown to always achieve ASE improvement compared with the conventional TX based sensing.
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感知与预测:基于认知无线电网络空间干扰相关性的机会MAC
二次发射机的机会探测是实现认知无线电网络的关键技术。然而,这种检测不能保证辅助接收机(RXs)的可靠通信,特别是当它们的关联距离较长时。为了解决这个问题,本文提出了一种新的MAC,称为感知和预测(SaP),其中每个辅助TX根据RX的干扰水平预测来决定是否访问。首先,我们利用随机几何以概率形式提供空间干扰相关性,并利用它在保证主网服务质量的同时最大限度地提高次网的区域频谱效率(ASE);通过USRP的仿真和试验台实验表明,与传统的基于TX的传感相比,SaP总能实现ASE的改进。
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