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Designated Verifier Proxy Blind Signature Scheme for Unmanned Aerial Vehicle Network Based on Mobile Edge Computing

机译:基于移动边缘计算的无人空中车辆网络指定的验证者代理盲签名方案

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摘要

Unmanned Aerial Vehicle (UAV) has enormous potential in many domains. According to the characteristics of UAV, it is important for UAV network to assure low latency and integrity and authentication of commands sent by command center or command stations to UAV. In this paper, we proposed a UAV network architecture based on mobile edge computing (MEC) which helps guarantee low latency in the UAV network. Afterwards, we proposed a designated verifier proxy blind signature (DVPBS) scheme for UAV network and proved that it is existentially unforgeable under an adaptive chosen message attack in the random oracle model. We compared the efficiency of our DVPBS scheme with other signature schemes by implementing them in jPBC and theoretically analyzing their signature length. The experiment results indicate that our DVPBS scheme is efficient. The signature length of our DVPBS is longer, but it is still short enough compared with the transmission capacity of UAV.
机译:无人驾驶飞行器(UAV)在许多域中具有巨大潜力。根据UAV的特点,UAV网络非常重要,以确保命令中心或命令站发送到UAV的命令的低延迟和完整性和身份验证。在本文中,我们提出了一种基于移动边缘计算(MEC)的UAV网络架构,其有助于在UAV网络中保证低延迟。之后,我们提出了一个用于UAV网络的指定验证者代理盲签名(DVPBS)方案,并证明它在随机Oracle模型中的自适应选择的消息攻击下存在不可避免。我们将DVPBS方案与其他签名方案进行了比较了DVPBS方案,通过在JPBC中实施它们以及理论上分析其签名长度。实验结果表明我们的DVPBS计划是有效的。 DVPBS的签名长度较长,但与UAV的传输容量相比,它仍然足够短。

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