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A fixed-time synchronization-based secure communication scheme for two-layer hybrid coupled networks

机译:用于双层混合耦合网络的基于固定时间同步的安全通信方案

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This literature mainly investigates the fixed-time synchronization-based secure communication issue with two-layer hybrid coupled networks, which consist of multitudinous subnets with different trans mittal time-delays. By the application of appropriate cluster strategy, the subnets, in both transmitter and receiver, make up several matched subnet-pairs (encryption/encryption units). The nodes may behave different dynamics in different subnet-pairs but identical ones in the same subnet-pair. Similar to the block encryption method, every matched subnet-pair is merely in charge a portion of information encryption/decryption. Many encryption/encryption units working simultaneously can manifest the intricate characteristics of nodes and increase the encryption/decryption rate. Fixed-time synchronization is applied, which means that the time for information encryption/decryption is computable. Moreover, the chaos message, generated by a chaotic system, is taken as a key array, the key space will be enlarged with node-size at transmitter. With the design of some suitable chattering-free feedback controllers, a simple fixed-time synchronization-based secure communication scheme is given and the effectiveness is proved. This scheme shows not only good performance with regard to the complexity of key arrays and timeliness but also excellent robustness to the effect of time-delays. Both the theoretic analysis and numerical emulations indicate the feasibility and utility of the given scheme. (c) 2020 Elsevier B.V. All rights reserved.
机译:该文献主要研究了与双层混合耦合网络的基于固定时间同步的安全通信问题,该网络由具有不同跨越时滞的众多子网组成。通过应用适当的集群策略,子网,在发射器和接收器中,构成几个匹配的子网对(加密/加密单元)。节点可以在不同的子网对中表现不同的动态,而是在同一子网对中的相同的动态。类似于块加密方法,每个匹配的子网对仅用于给一部分信息加密/解密。许多加密/加密单元同时工作可以表明节点的复杂特性并提高加密/解密速率。应用了固定时间同步,这意味着信息加密/解密的时间是可计算的。此外,由混沌系统生成的混沌消息被视为关键阵列,关键空间将在发射机处用节点大小放大。随着一些合适的无抖动反馈控制器的设计,给出了简单的固定时间同步的安全通信方案,并且证明了有效性。该方案不仅表现出对钥匙阵列的复杂性和及时性的良好性能,而且对时滞的效果的良好稳健性。理论分析和数值仿真都表明了给定方案的可行性和效用。 (c)2020 Elsevier B.v.保留所有权利。

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