A Flexible Anti-Jamming Channel Hopping for Cognitive Radio Networks

C. Chao, Wei-Che Lee, Cong Wang, Shin-Chung Huang, Yu-Chich Yang
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引用次数: 4

Abstract

In cognitive radio networks (CRNs), secondary users (SUs) are vulnerable to malicious attacks because an SU node's opportunistic access cannot be protected from adversaries. How to design a channel hopping scheme to protect SU nodes from jamming attacks is thus an important issue in CRNs. Existing anti-jamming channel hopping schemes have some limitations: Some require SU nodes to exchange secrets in advance; some require an SU node to be either a receiver or a sender, and some are not flexible enough. Another issue for existing anti-jamming channel hopping schemes is that they do not consider different nodes may have different traffic loads. In this paper, we propose an anti-jamming channel hopping protocol, Load Awareness Anti-jamming channel hopping (LAA) scheme. Nodes running LAA are able to change their channel hopping sequences based on their sending and receiving traffic. Simulation results verify that LAA outperforms existing anti-jamming schemes.
认知无线网络中一种灵活的抗干扰信道跳变
在认知无线网络(crn)中,辅助用户(SU)容易受到恶意攻击,因为无法保护SU节点的机会访问。因此,如何设计一种信道跳变方案来保护SU节点免受干扰攻击是crn中的一个重要问题。现有的抗干扰信道跳变方案存在一定的局限性:一些方案要求SU节点提前交换秘密;有些要求SU节点既可以是接收方也可以是发送方,有些则不够灵活。现有的信道跳变抗干扰方案存在的另一个问题是没有考虑到不同节点可能具有不同的业务负载。本文提出了一种抗干扰跳频协议——负载感知抗干扰跳频(LAA)方案。运行LAA的节点能够根据它们的发送和接收流量改变它们的信道跳变序列。仿真结果验证了该方法优于现有的抗干扰方案。
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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