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A Low Computational Complexity Authentication Scheme in Underwater Wireless Sensor Network

机译:水下无线传感器网络中的一种低计算复杂度认证方案

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Underwater Wireless Sensor Networks (UWSNs) are vulnerable to attack because of the broadcast nature of the transmission. The sensor nodes in UWSN are highly constrained in terms of computational capabilities and communication bandwidth. Authentication schemes for ground WSNs might not be applicable for UWSNs due to their less computation and communication capacity. Thus, it is necessary to design special schemes tailored to underwater environments. In this paper, a low computational complexity authentication scheme is proposed. By using Vandermonde matrix, we replace the matrix multiplication by matrix addition to greatly reduce the computation overhead. Moreover, our scheme is self-correctable and irreversible which further enhances the security of the UWSNs. Experiment results indicate our algorithm has advantages in energy and time consumption over traditional RSA and Blom's scheme.
机译:水下无线传感器网络(UWSN)由于传输的广播性质而容易受到攻击。 UWSN中的传感器节点在计算能力和通信带宽方面受到严格限制。地面WSN的身份验证方案可能不适用于UWSN,因为它们的计算量和通信量较少。因此,有必要设计适合水下环境的特殊方案。本文提出了一种低计算复杂度的认证方案。通过使用范德蒙德矩阵,我们用矩阵加法代替了矩阵乘法,从而大大减少了计算开销。此外,我们的方案是可自我纠正和不可逆的,从而进一步增强了UWSN的安全性。实验结果表明,与传统的RSA和Blom方案相比,该算法在能耗和时间消耗上均具有优势。

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