一种高效的无人机互联网证书聚合签名方案

Muhammad Asghar Khan, Insaf Ullah, M. Alsharif, A. Alghtani, A. Aly, Chien‐Ming Chen
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引用次数: 16

摘要

无人机互联网(IoD)是利用物联网基础设施向用户提供实时数据通信服务的小型无人机网络。一方面,IoD是许多军事和民用应用的绝佳选择,因为它具有敏捷性、低成本和易于部署等关键特性;另一方面,小型无人机很少在设计时考虑到安全和隐私问题。入侵者可以利用此漏洞破坏IoD网络的安全性和隐私性,破坏信息交换操作。在IoD网络中连接多架无人机,从特定区域收集数据,因此聚合签名方案是解决安全和隐私问题的最佳解决方案。然而,过去为此目的提出的大多数聚合签名方案要么是基于身份的,要么依赖于无证书的加密方法。使用这些方法,称为可信机构(TA)的中央机构负责生成和分发每个用户的密钥。然而,密钥托管问题被表述为知道TA生成的秘密密钥。这些方法受到密钥分布问题的限制,限制了它们在各种情况下的适用性。为了解决这些问题,本文提出了一种基于超椭圆曲线密码(HECC)的基于证书的聚合签名(CBS-AS)方案。通过形式化的安全分析,验证了该方案在计算成本上的有效性和不可伪造性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Efficient Certificate-Based Aggregate Signature Scheme for Internet of Drones
Internet of drones (IoD) is a network of small drones that leverages IoT infrastructure to deliver real-time data communication services to users. On the one hand, IoD is an excellent choice for a number of military and civilian applications owing to key characteristics like agility, low cost, and ease of deployment; on the other hand, small drones are rarely designed with security and privacy concerns in mind. Intruders can exploit this vulnerability to compromise the security and privacy of IoD networks and harm the information exchange operation. An aggregate signature scheme is the best solution for resolving security and privacy concerns since multiple drones are connected in IoD networks to gather data from a certain zone. However, most aggregate signature schemes proposed in the past for this purpose are either identity-based or relied on certificateless cryptographic methods. Using these methods, a central authority known as a trusted authority (TA) is responsible for generating and distributing secret keys of every user. However, the key escrow problem is formulated as knowing the secret key generated by the TA. These methods are hampered by key distribution issues, which restrict their applicability in a variety of situations. To address these concerns, this paper presents a certificate-based aggregate signature (CBS-AS) scheme based on hyperelliptic curve cryptography (HECC). The proposed scheme has been shown to be both efficient in terms of computation cost and unforgeable while testing its toughness through formal security analysis.
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