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A system inversion approach to chaos-based secure speech communication

机译:一种基于混沌的安全语音通信的系统反转方法

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A new approach to real-time secure speech communication is proposed based on the inversion theory of nonlinear discrete-time dynamical systems. The proposed approach uses an observable minimal-phase nonlinear discrete-time dynamical system, particularly with chaotic zerodynamics, as the drive system to generate encrypted speech signals for transmission. The receiver is the minimal left-inverse system of the drive system. The receiver decrypts the received signal and recovers the original message in real-time. The effectiveness of the proposed approach and design is demonstrated via examples for secure speech signal transmission. Performance evaluation of the designed secure communication system is discussed. Both analysis and simulation show that the new scheme is relatively secure but simple, accurate and robust, suitable for some civil and commercial voice-communication applications.
机译:基于非线性离散时间动态系统的反演理论,提出了一种实时安全语音通信的新方法。所提出的方法使用可观察到的最小相位非线性离散时间动力系统,特别是具有混沌零动力学的动力系统,作为驱动系统来生成加密的语音信号进行传输。接收器是驱动系统的最小左反转系统。接收器解密接收到的信号并实时恢复原始消息。所提出的方法和设计的有效性通过安全语音信号传输的示例得到了证明。讨论了设计的安全通信系统的性能评估。分析和仿真均表明,该新方案相对安全,但简单,准确,健壮,适用于某些民用和商业语音通信应用。

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