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Designing a real-time spectrum handoff algorithm for VoIP based Cognitive Radio Networks

机译:为基于VoIP的认知无线电网络设计实时频谱切换算法

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Secondary Users (SUs) in a Cognitive Radio Network (CRN) face unpredictable interruptions in transmission due to the random arrival of Primary Users (PUs), leading to spectrum handoff or dropping instances. An efficient spectrum handoff algorithm, thus, becomes one of the indispensable components in CRN, especially for real-time communication like Voice over IP (VoIP). In this regard, this paper investigates the effects of spectrum handoff on the Quality of Service (QoS) for VoIP traffic in CRN, and proposes a real-time spectrum handoff algorithm in two phases. The first phase (VAST-VoIP based Adaptive Sensing and Transmission) adaptively varies the channel sensing and transmission durations to perform intelligent dropping decisions. The second phase (ProReact-Proactive and Reactive Handoff) deploys efficient channel selection mechanisms during spectrum handoff for resuming communication. Extensive performance analysis in analytical and simulation models confirms a decrease in spectrum handoff delay for VoIP SUs by more than 40% and 60%, compared to existing proactive and reactive algorithms, respectively and ensures a minimum 10% reduction in call-dropping probability with respect to the previous works in this domain. The effective SU transmission duration is also maximized under the proposed algorithm, thereby making it suitable for successful VoIP communication.
机译:由于主要用户(PU)的随机到达,认知无线电网络(CRN)中的次要用户(SU)面临不可预测的传输中断,从而导致频谱切换或实例丢失。因此,高效的频谱切换算法已成为CRN中必不可少的组件之一,尤其是对于IP语音(VoIP)等实时通信而言。因此,本文研究了频谱切换对CRN中VoIP流量的服务质量(QoS)的影响,并提出了两个阶段的实时频谱切换算法。第一阶段(基于VAST-VoIP的自适应感应和传输)自适应地更改信道感应和传输持续时间,以执行智能丢弃决策。第二阶段(ProReact-主动式和被动式切换)在频谱切换期间部署有效的信道选择机制,以恢复通信。在分析和仿真模型中进行的广泛性能分析证实,与现有的主动算法和无功算法相比,VoIP SU的频谱切换延迟分别减少了40%和60%以上,并确保将呼叫丢失的可能性至少降低10%到该领域的先前作品。在所提出的算法下,有效的SU传输持续时间也被最大化,从而使其适合成功的VoIP通信。

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