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Application of Game Theory to Cooperative Underlay Cognitive Radio IoT

机译:博弈论在合作基础认知无线电物联网中的应用

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Internet of things (IoT) is a new paradigm in wireless communication that offers a host of new opportunities to exploit the finite resources available. Cognitive radio networks (CRNs) employ these spectrum opportunities by using their inherent adaptive nature to automatically detect available channels in the spectrum and change transmission parameters to allow more communications to run concurrently, thus improving overall efficiency. The application of game theoretic principles to solving problems in this domain allows for the creation of fairly realistic models that clearly outline the relationship between the stakeholders involved, under the assumption of rationality. This paper presents a model for an IoT-based CRN in the underlay mode of operation. A triangular lattice with a set of relays is considered to model the secondary user network. The interference and power constraints accounted for in calculating the Nash equilibrium bring the model closer to direct applicability in the real world by including variations depending on channel strength and desirability.
机译:物联网(IoT)是无线通信中的一种新范式,它为利用有限的可用资源提供了许多新的机会。认知无线电网络(CRN)通过利用其固有的自适应特性来利用这些频谱机会,以自动检测频谱中的可用信道并更改传输参数以允许更多通信同时运行,从而提高了整体效率。博弈论原理在解决这一领域问题中的应用允许创建相当现实的模型,该模型在合理性假设下清楚地勾勒出所涉利益相关者之间的关系。本文介绍了在底层操作模式下基于IoT的CRN的模型。带有一组中继的三角形晶格被视为对辅助用户网络进行建模。计算纳什均衡时考虑的干扰和功率约束通过包含取​​决于信道强度和期望度的变化,使模型更接近于在现实世界中的直接适用性。

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