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Provably Secure and Generalized Signcryption With Public Verifiability for Secure Data Transmission Between Resource-Constrained IoT Devices

机译:以公共验证可提供安全和广泛的签名,以便在资源受限的物联网设备之间安全数据传输

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摘要

The Internet of Things (IoT) is revolutionizing our modern lives by introducing active connection between smart devices. However, IoT devices are repeatedly exhibiting many security flaws, which will inevitably lead to eavesdropping and impersonation attacks. Thus, providing a proper security in IoT becomes a prime focus for the researchers. In cryptography, certificateless signcryption (CLSC) is one of the recent public key techniques for the security requirements of the authenticity and confidentiality of any message between the parties. In this article, a new generalized CLSC (gCLSC) is introduced to provide the functions of digital signature and encryption to fulfill the authenticity and confidentiality for the resource-constrained IoT devices. Besides, the gCLSC supports the property of public verifiability and security of an ideal signcryption under the strong Diffie-Hellman and bilinear Diffie-Hellman inversion problems without random oracle model. Performance assessment of the gCLSC gives satisfactory results after comparing with other competitive CLSC schemes in terms of its functionality. Therefore, the gCLSC can be adopted in the IoT networks where authenticity, confidentiality, and lightweight are the essential factors.
机译:事物互联网(物联网)通过在智能设备之间引入主动连接来彻底改变我们的现代生命。然而,物联网设备反复表现出许多安全缺陷,这将不可避免地导致窃听和冒充攻击。因此,在IOT中提供适当的安全成为研究人员的主要关注点。在密码造影中,证书签约(CLSC)是最近缔约方之间任何消息的真实性和机密性的安全要求的最新公钥之一。在本文中,引入了新的广义CLSC(GCLSC)以提供数字签名和加密的功能,以满足资源受限的物联网设备的真实性和机密性。此外,GCLSC支持的公共验证性和安全性的属性,在没有随机的Oracle模型的情况下,在强大的Difie-Hellman和Bilinear Diffie-Hellman反演问题下的理想签名。在其功能方面与其他竞争性CLSC方案比较后,GCLSC的性能评估给出了令人满意的结果。因此,GCLSC可以在IOT网络中采用,其中真实性,机密性和轻量级是基本因素。

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