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Maximize resource utilization based channel access model with presence of reactive jammer for underwater wireless sensor network

机译:基于资源利用率最大化了基于资源利用率的频道访问模型,在水下无线传感器网络中存在反应混干器

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Underwater sensor networks (UWSNs) are vulnerable to jamming attacks. Especially, reactive jamming which emerged as a greatest security threat to UWSNs. Reactive jammer are difficult to be removed, defended and identified. Since reactive jammer can control and regulate (i.e., the duration of the jam signal) the probability of jamming for maintaining high vulnerability with low detection probability. The existing model are generally designed considering terrestrial wireless sensor networks (TWSNs). Further, these models are limited in their ability to detect jamming correctly, distinguish between the corrupted and uncorrupted parts of a packet, and be adaptive with the dynamic environment. Cooperative jamming model has presented in recent times to utilize resource efficiently. However, very limited work is carried out using cooperative jamming detection. For overcoming research challenges, this work present Maximize Resource Utilization based Channel Access (MRUCA). The MRUCA uses cross layer design for mitigating reactive jammer (i.e., MRUCA jointly optimizes the cooperative hopping probabilities and channel accessibility probabilities of authenticated sensor device). Along with channel, load capacity of authenticated sensor device is estimated to utilize (maximize) resource efficiently. Experiment outcome shows the proposed MRUCA model attain superior performance than state-of-art model in terms of packet transmission, BER and Detection rate.
机译:水下传感器网络(UWSNS)容易受到干扰攻击的影响。特别是,反应性干扰是对UWSNS成为最大的安全威胁。反应性干扰难以移除,辩护和鉴定。由于反应干扰器可以控制和调节(即,卡纸信号的持续时间),从检测概率低漏洞保持高脆性的概率。现有模型通常考虑陆地无线传感器网络(TWSN)。此外,这些模型的能力受到正确检测干扰的能力,区分分组的损坏和未损坏的部分,并与动态环境自适应。合作干扰模型近期介绍了有效利用资源。然而,使用合作干扰检测进行非常有限的工作。为了克服研究挑战,这项工作提出了最大化基于资源利用率的频道访问(MRUCA)。 MRUCA使用横梁设计来减轻反应性干扰器(即,MRUCA共同优化认证传感器设备的协同跳跃概率和通道可访问性概率)。随着频道,估计经过认证的传感器设备的负载能力以有效利用(最大化)资源。实验结果表明,在数据包传输,BER和检测率方面,所提出的MRUCA模型比最先进的模型实现了卓越的性能。

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