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RLizard: Post-Quantum Key Encapsulation Mechanism for IoT Devices

机译:RLizard:物联网设备的量子后密钥封装机制

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We propose the RLizard key encapsulation mechanism (KEM), whose security depends on the ring learning with errors and ring learning with rounding problems. Because RLizard operates on a special type of ring, it is more efficient in terms of both the clock cycles required for key generation and the key size compared with the original Lizard scheme. To demonstrate the superiority of the proposed method over other well-known KEMs, we compared their performances in the 32-bit ARM Internet of Things (IoT) environment. The performance analysis showed that the RLizard KEM requires the fewest clock cycles for key generation, encapsulation, and decapsulation when the parameters are set to support a security level comparable with that of AES-128. In summary, the RLizard KEM is expected to be used for secure communication and authentication between IoT endpoint devices, whose computational power is generally limited.
机译:我们提出了RLizard密钥封装机制(KEM),其安全性取决于带有错误的环学习和具有舍入问题的环学习。由于RLizard在特殊类型的环上运行,因此与原始的Lizard方案相比,在密钥生成所需的时钟周期和密钥大小方面,它效率更高。为了证明该方法相对于其他知名KEM的优越性,我们比较了它们在32位ARM物联网(IoT)环境中的性能。性能分析表明,当参数设置为支持与AES-128相当的安全级别时,RLizard KEM需要最少的时钟周期进行密钥生成,封装和解封装。总而言之,RLizard KEM有望用于物联网终端设备之间的安全通信和身份验证,其计算能力通常受到限制。

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