Ullah Insaf, Khan Muhammad Asghar, Abdullah Ako Muhammad, Mohsan Syed Agha Hassnain, Noor Fazal, Algarni Fahad, Innab Nisreen
Hamdard Institute of Engineering and Technology, Hamdard University, Islamabad 440000, Pakistan.
Computer Science Department, College of Basic Education, University of Sulaimani, Sulaimaniyah 00964, Kurdistan Region, Iraq.
Micromachines (Basel). 2022 Nov 8;13(11):1926. doi: 10.3390/mi13111926.
Micro Aerial Vehicles (MAVs) are a type of UAV that are both small and fully autonomous, making them ideal for both civilian and military applications. Modern MAVs can hover and navigate while carrying several sensors, operate over long distances, and send data to a portable base station. Despite their many benefits, MAVs often encounter obstacles due to limitations in the embedded system (such as memory, processing power, energy, etc.). Due to these obstacles and the use of open wireless communication channels, MAVs are vulnerable to a variety of cyber-physical attacks. Consequently, MAVs cannot execute complex cryptographic algorithms due to their limited computing power. In light of these considerations, this article proposes a conditional privacy-preserving generalized ring signcryption scheme for MAVs using an identity-based cryptosystem. Elliptic Curve Cryptography (ECC), with a key size of 160 bits, is used in the proposed scheme. The proposed scheme's security robustness has been analyzed using the Random Oracle Model (ROM), a formal security evaluation method. The proposed scheme is also compared in terms of computation cost, communication cost and memory overhead against relevant existing schemes. The total computation cost of the proposed scheme is 7.76 ms, which is 8.14%, 5.20%, and 11.40% schemes. The results show that the proposed scheme is both efficient and secure, proving its viability.
微型飞行器(MAV)是一种小型且完全自主的无人机,使其成为民用和军事应用的理想选择。现代微型飞行器可以在携带多个传感器的同时悬停和导航,进行长距离操作,并将数据发送到便携式基站。尽管微型飞行器有诸多优点,但由于嵌入式系统存在局限性(如内存、处理能力、能量等),它们经常会遇到障碍。由于这些障碍以及开放无线通信信道的使用,微型飞行器容易受到各种网络物理攻击。因此,由于计算能力有限,微型飞行器无法执行复杂的加密算法。鉴于这些考虑因素,本文提出了一种基于身份密码系统的微型飞行器条件隐私保护广义环签密方案。所提方案使用了密钥大小为160位的椭圆曲线密码学(ECC)。已使用形式化安全评估方法随机预言模型(ROM)对所提方案的安全鲁棒性进行了分析。还在所提方案与相关现有方案的计算成本、通信成本和内存开销方面进行了比较。所提方案的总计算成本为7.76毫秒,分别比其他方案低8.14%、5.20%和11.40%。结果表明,所提方案既高效又安全,证明了其可行性。