首页> 外文期刊>Transactions on Emerging Telecommunications Technologies >ECS‐CP‐ABE: A lightweight elliptic curve signcryption scheme based on ciphertext‐policy attribute‐based encryption to secure downlink multicast communication in edge envisioned advanced metering infrastructure networks
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ECS‐CP‐ABE: A lightweight elliptic curve signcryption scheme based on ciphertext‐policy attribute‐based encryption to secure downlink multicast communication in edge envisioned advanced metering infrastructure networks

机译:ECS -CP -ABE:基于Ciphertext -Policy属性属性加密的轻质椭圆曲线标记方案,可在Edge Edge Invisioned Advanced Advanced Advanced Advance Inviented Invisioned Advance Inviented Advance Inviented Advance Inviented Invising Invisional intellink多播通信中

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摘要

Abstract As an integral part of the smart grid, advanced metering infrastructure (AMI) implements two‐way communication to enable the smart grid achieving the desired performance improvements over the legacy grid. Integrating communication in addition to the inherited weakness of the power grid paves the way to countless number of security threats to target its communication networks, therefore ensuring secure data exchange is a key concern for AMI networks. In this regard, many schemes are proposed in the literature to secure this two‐way communication, however, very little effort has been focused on multicast transmissions carried out between the control center and a group of smart meters. In order to empower efficient, authentic, and confidential data exchange, this article proposes a new signcryption scheme for multicast downlink communication in edge envisioned AMI networks. The proposed scheme is constructed based on ciphertext‐policy attribute‐based encryption to attain secure fine‐grained access control for the multirecipient communication between the utility control center and a group of smart meters. The novelty of our scheme lies behind the fact that it is an elliptic curve cryptosystem that is pairing free, in opposite to most ABE schemes. Instead of the complex bilinear pairing operations, we exploited faster elliptic curve point multiplication operations to construct the proposed signcryption model. we demonstrate the strength of our protocol in defending against passive, collusion, reply, data modification, and signature forgery attacks. Simulation results prove the efficiency of our protocol in terms of messages size and computation complexity when compared with other schemes.
机译:摘要是智能电网,高级计量基础架构(AMI)的组成部分,实现了双向通信,以使智能网格能够实现遗产网格的所需性能改进。除了电力网的继承弱点之外,集成通信为无数的安全威胁铺平了目标,以定位其通信网络,因此确保安全数据交换是AMI网络的关键问题。在这方面,文献中提出了许多方案来确保这种双向交流,但是,很少的努力集中在控制中心和一组智能电表之间进行的多播传输。为了赋予高效,真实和机密数据交换,本文提出了一种新的标志性方案,用于在Edge Edge设想的AMI网络中进行多播下链接通信。提出的方案是基于基于密文的基础属性加密来构建的,以实现实用程序控制中心和一组智能电表之间的多重新交流通信的安全精细访问控制。我们计划的新颖性在于这一事实背后是它是一个椭圆曲线密码系统,与大多数安倍座计划相反。我们利用了更快的椭圆曲线乘法操作,而不是复杂的双线性配对操作,以构建所提出的识别模型。我们证明了我们的方案的强度,以防止被动,勾结,答复,数据修改和签名伪造攻击。与其他方案相比,仿真结果证明了我们协议的效率。

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