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Analyzing Cognitive Radio Network Operation With the Mechanism of Deciding Handoff and Process of Handoff Employing Varied Distribution Models (5G)

机译:分析认知无线电网络运行与决定切换的机制和切换采用不同分布模型的切换(5G)

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Cognitive radio networks (CRNs) deal with sensing, decision making, sharing, and mobility. Among these aspects, spectrum mobility assumes a vital role for spectrum handoff to occur. When the spectrum handoff process is analyzed, there are call drops, spectrum handoff, and interferences with the adjacent channels. For minimizing the handoff of the spectrum's probability as well as the call drops, which involves three processes, which are followed in sequential order, results demonstrate a better QoS. In the following three processes, the first process starts with the Markov model that identifies a channel's states and selects the channel which is apt. The second process, multiple attributes decision making (MADM), methods choose one of the best possible channels among all the channels based on various metrics in the proposed hybrid method. In the third process, the spectrum handoff is analyzed through different distribution models to indicate which model is the desirable one for a handoff process such as the one with stationary users or the other with non-stationary users.
机译:认知无线电网络(CRNS)处理传感,决策,共享和移动性。在这些方面中,频谱移动性假定频谱切换发生至关重要的作用。当分析频谱切换过程时,有呼叫丢弃,频谱切换和与相邻信道的干扰。为了使频谱的概率和呼叫丢弃的切换最小化,这涉及三个过程,其按顺序排列,结果表明了更好的QoS。在以下三个进程中,第一个进程从标识频道状态标识的马尔可夫模型开始,并选择易于的频道。第二个进程,多个属性决策(MADM),方法基于所提出的混合方法中的各种度量选择所有信道中的所有信道中的一个最佳通道之一。在第三过程中,通过不同的分发模型分析频谱切换,以指示哪种模型是用于切换过程的理想之一,例如具有静止用户的静止用户或另一个具有非静止用户的型号。

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