Fuzzy Tree Schematic for Spectrum Handoff Reduction in Cognitive Radio Networks

Sampurna Dadi, Selo Sulistiyo, Wayan Mustika
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Abstract

Spectrum is a limited resource, so it must be used effectively. The fixed spectrum allocation method currently in operation may not sustain the growth in the network access users, which continues to increase over time. Many studies have shown that the spectrum deficiency problem can be solved with cognitive radio network (CRN) technology. CRN allows flexible spectrum utilization. Spectrum handoff is one of the fundamental prerequisites for dynamic spectrum access in cognitive radio networks. The ping-pong effect is one of the problems caused by the frequent occurrence of unnecessary handoff spectrum. So, in CRN, the right handoff decision is needed to avoid the ping-pong effect. The proposed fuzzy system carries the concept of a fuzzy tree that uses two fuzzy inference systems (FIS), which work in two stages, namely FIS-1 and FIS-2. In the early stages, the FIS-1 controls the secondary users (SU) power and prevents interference with the primary users (PU). FIS-2 is used to execute precise spectrum handoff decisions. The test results show that the amount of handoff spectrum has decreased by up to 43 % compared to other methods, which are only 60 %. This results in a decrease of 16.67% from the previous method. Thus, the ping-pong effect can be minimized with the right handoff decisions.
认知无线电网络频谱切换减少的模糊树示意图
频谱是一种有限的资源,因此必须有效利用。目前使用的固定频谱分配方式可能无法承受随着时间的推移而不断增长的上网用户的增长。许多研究表明,认知无线电网络(CRN)技术可以解决频谱不足问题。CRN允许灵活的频谱利用。频谱切换是认知无线电网络中动态频谱接入的基本前提之一。乒乓效应是由于频繁出现不必要的切换频谱而引起的问题之一。因此,在CRN中,需要正确的交接决策来避免乒乓效应。所提出的模糊系统采用模糊树的概念,该模糊树使用两个模糊推理系统(FIS),该系统分两个阶段工作,即FIS-1和FIS-2。在早期阶段,fis1主要用于控制SU (secondary users)电源,防止对PU (primary users)的干扰。fis2用于执行精确的频谱切换决策。测试结果表明,与其他方法相比,该方法减少了多达43%的切换频谱量,而其他方法的切换频谱量仅为60%。这比之前的方法减少了16.67%。因此,乒乓效应可以通过正确的交接决定最小化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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