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Opportunistic channel selection MAC protocol for cognitive radio ad hoc sensor networks in the internet of things

机译:物联网中认知无线电自组织传感器网络的机会信道选择MAC协议

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摘要

Internet of things (IoT) constitutes networked devices that can gather and exchange information. The scarcity of the available spectrum used by a large number of devices in IoT is a challenge. Spectrum scarcity changes the whole paradigm of spectrum access in order to increase utilization of the limited resource. Cognitive radio ad hoc sensor networks (CRASN) also operate on the same principle and exploit spectrum holes for efficient utilization of the spectrum. In a multi-channel CRASN, the dynamic nature of primary user (PU) activity and the resulting frequent channel switching require an efficient medium access control (MAC) protocol. A channel selection scheme cannot solely perform well without help of the MAC protocol. As a result, most of the channels remain underutilized, and eventually, overall system performance degrades. In this paper, an opportunistic MAC protocol for CRASN is proposed, and is compared to the IEEE 802.11 MAC protocol with round robin and random channel selection schemes. Furthermore, an opportunistic channel selection scheme (OCSS) is proposed. The simulation results confirm the effectiveness of the proposed approach in comparison of the round robin and random channel selection schemes.
机译:物联网(IoT)构成了可以收集和交换信息的联网设备。物联网中大量设备使用的可用频谱的稀缺性是一个挑战。频谱稀缺性改变了整个频谱访问范式,以提高有限资源的利用率。认知无线电自组织传感器网络(CRASN)也以相同的原理运行,并利用频谱漏洞来有效利用频谱。在多通道CRASN中,主要用户(PU)活动的动态性质以及由此导致的频繁通道切换需要有效的媒体访问控制(MAC)协议。如果没有MAC协议的帮助,信道选择方案将无法单独执行。结果,大多数通道仍未得到充分利用,最终,整个系统性能下降。本文提出了一种用于CRASN的机会MAC协议,并将其与具有循环和随机信道选择方案的IEEE 802.11 MAC协议进行了比较。此外,提出了机会信道选择方案(OCSS)。仿真结果证实了所提出的方法与循环法和随机信道选择方案相比的有效性。

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