空军工程大学信息与导航学院,陕西西安 710077
[ "贠彦直 男,1988年出生于甘肃省定西市.硕士研究生.主要研究方向为物理层安全、混沌加密.E-mail: 337949142@qq.com" ]
[ "孟庆微 男,1980年出生于黑龙江省安达市.博士、教授.主要研究方向为物理层安全、通信信号处理." ]
[ "王 晗 女,1989年出生于陕西省西安市.博士、讲师.主要研究方向为通信信号处理、网络层协议." ]
[ "马志强 男,1968年出生于山东省威海市.博士、副教授.主要研究方向为信息与通信工程." ]
收稿:2025-02-22,
录用:2025-09-18,
纸质出版:2025-09-25
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贠彦直, 孟庆微, 王晗, 等. 无简并超混沌驱动三维星座加密的EWFRFT通信方法[J]. 电子学报, 2025, 53(09): 3245-3255.
YUN Yan-zhi, MENG Qing-wei, WANG Han, et al. EWFRFT Communication Method Using Non-Degenerate Hyperchaos-Driven Three-Dimensional Constellation Encryption[J]. Acta Electronica Sinica, 2025, 53(09): 3245-3255.
贠彦直, 孟庆微, 王晗, 等. 无简并超混沌驱动三维星座加密的EWFRFT通信方法[J]. 电子学报, 2025, 53(09): 3245-3255. DOI:10.12263/DZXB.20250135
YUN Yan-zhi, MENG Qing-wei, WANG Han, et al. EWFRFT Communication Method Using Non-Degenerate Hyperchaos-Driven Three-Dimensional Constellation Encryption[J]. Acta Electronica Sinica, 2025, 53(09): 3245-3255. DOI:10.12263/DZXB.20250135
为进一步增强无线通信的安全性,提出了一种无简并超混沌驱动三维星座加密的扩展加权分数傅里叶变换(Extended Weighted Fractional Fourier Transform, EWFRFT)通信方法.该方法构建了一种无简并超混沌,运用其产生的混沌序列控制缩放、罗德里格斯旋转的参数,生成随机的缩放矩阵、罗德里格斯旋转矩阵,对每个星座点实施先缩放再旋转的三维星座加密;随后,将加密星座点组合为I/Q信号,再进行EWFRFT处理.同时,给出了三维星座加密的数学模型和密码原语,证明了其具有完全保密性,且每个星座点均有8个相互独立的因素控制加密,变换后的位置更加随机不可预测.仿真结果表明,所提方法加密后不仅扰乱了原本分布规律的星座图,提升了无线信号的抗截获能力,而且传输信息呈现良好的随机性分布,能够对抗穷举、统计等常见攻击.
To further enhance the security of wireless communication
an extended weighted fractional Fourier transform (EWFRFT) communication method using non-degenerate hyperchaos-driven three-dimensional constellation encryption is proposed. The method constructs a non-degenerate hyperchaos and utilizes its generated sequences to control the parameters of scaling and Rodrigues’ rotation. It generates randomized scaling matrices and Rodrigues’ rotation matrices
applying 3D constellation encryption through sequential scaling followed rotation to each constellation point. Then
the encrypted constellation points are combined into I/Q signals for EWFRFT processing. Furthermore
the mathematical model and cryptographic primitives for 3D constellation encryption are presented
which demonstrates its perfect confidentiality. Each constellation point is controlled by 8 mutually factors for encryption
resulting in more randomized and unpredictable transformed positions. Simulation results show that the proposed method not only disrupts the original structured constellation distribution
improving the anti-interception capability of wireless signals
but also presents excellent randomness in transmitted information
effectively resisting common attacks such as exhaustive attack and statistical attack.
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