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An effective spectrum handoff scheme for Cognitive Radio Ad hoc Networks

机译:认知无线电自组织网络的有效频谱切换方案

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Cognitive Radio Networks (CRNs) is the key technology to overcome the disadvantages of static spectrum allocation and enhance spectrum utilization through Dynamic Spectrum Access (DSA) techniques. One important topic of the development of CRNs is spectrum handoff, which ensures the uninterrupted communication of Secondary Users (SUs). Two types of spectrum handoff approaches exist, namely the proactive and the reactive spectrum handoff. When the Primary User (PU) traffic is high the proactive spectrum handoff approach is more suitable whereas the reactive handoff on light PU traffic achieves better performance. In this paper we evaluate the use of proactive and reactive spectrum handoff policies in CRNs. Simulations are conducted using NS-3 simulator. To the extent of our knowledge, an extensive CRN simulation regarding spectrum handoff on NS-3 simulator has not been carried out. Furthermore, we implemented a hybrid spectrum handoff scheme that selectively uses either reactive or proactive handoffs, based on PU traffic intensity. Additionally our scheme adjusts dynamically the SU frame size throughout SU communications, to minimize collisions. Simulations show that the proposed hybrid scheme performs better than the proactive and reactive handoff types. Moreover, the dynamic adjustment of the frame size on cognitive nodes enhances performance noticeably in certain scenarios.
机译:认知无线电网络(CRN)是克服静态频谱分配缺点并通过动态频谱访问(DSA)技术提高频谱利用率的关键技术。 CRN发展的一个重要主题是频谱切换,它可以确保二级用户(SU)的通信不中断。存在两种类型的频谱切换方法,即主动频谱切换和被动频谱切换。当主要用户(PU)流量较高时,主动频谱切换方法更为合适,而轻型PU流量的被动切换则可实现更好的性能。在本文中,我们评估了CRN中主动和被动频谱切换策略的使用。使用NS-3仿真器进行仿真。据我们所知,尚未进行有关NS-3仿真器频谱切换的广泛CRN仿真。此外,我们实现了一种混合频谱切换方案,该方案基于PU流量强度有选择地使用反应式或主动式切换。另外,我们的方案在整个SU通信中动态调整SU帧大小,以最大程度地减少冲突。仿真表明,所提出的混合方案比主动和反应越区切换类型具有更好的性能。此外,在某些情况下,对认知节点上的帧大小进行动态调整可显着提高性能。

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