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Evolutionary Game Theory-Based Collaborative Sensing Model in Emergency CRAHNs

机译:基于进化博弈理论的应急CRAHN协同感知模型

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摘要

Game theory has been a tool of choice for modeling dynamic interactions between autonomous systems. Cognitive radio ad hoc networks (CRAHNs) constituted of autonomous wireless nodes are a natural fit for game theory-based modeling. The game theory-based model is particularly suitable for "collaborative spectrum sensing" where each cognitive radio senses the spectrum and shares the results with other nodes such that the targeted sensing accuracy is achieved. Spectrum sensing in CRAHNs, especially when used in emergency scenarios such as disaster management and military applications, needs to be not only accurate and resource efficient, but also adaptive to the changing number of users as well as signal-to-noise ratios. In addition, spectrum sensing mechanism must also be proactive, fair, and tolerant to security attacks. Existing work in collaborative spectrum sensing has mostly been confined to resource efficiency in static systems using request-based reactive sensing resulting in high latencies. In this paper, evolutionary game theory (EGT) is used to model the behavior of the emergency CRAHNS, providing an efficient model for collaborative spectrum sensing. The resulting implementation model is adaptive to the changes in its environment such as signal-to-noise ratio and number of users in the network. The analytical and simulation models presented validate the system design and the desired performance.
机译:博弈论一直是建模自治系统之间动态交互的一种选择工具。由自主无线节点组成的认知无线电自组织网络(CRAHN)很自然地适合基于博弈论的建模。基于博弈论的模型特别适用于“协作频谱感知”,其中每个认知无线电都感知频谱并与其他节点共享结果,从而实现目标感知精度。 CRAHN中的频谱感测,尤其是在诸如灾难管理和军事应用之类的紧急情况下使用时,不仅需要准确且资源高效,而且还必须适应不断变化的用户数量以及信噪比。此外,频谱感测机制还必须是主动的,公平的并且可以承受安全攻击。协作频谱感测中的现有工作主要限于使用基于请求的反应式感测导致高延迟的静态系统中的资源效率。在本文中,进化博弈论(EGT)用于对紧急CRAHNS的行为进行建模,从而为协作频谱感知提供了有效的模型。最终的实现模型可适应其环境的变化,例如信噪比和网络中的用户数量。所提供的分析和仿真模型验证了系统设计和所需的性能。

著录项

  • 来源
    《Journal of electrical and computer engineering》 |2012年第3期|696571.1-696571.14|共14页
  • 作者

    Sasirekha GVK; Jyotsna Bapat;

  • 作者单位

    Department of Information Technology, International Institute of Information Technology, Bangalore 560100, India;

    Department of Information Technology, International Institute of Information Technology, Bangalore 560100, India;

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  • 正文语种 eng
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