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Implementation of chaotic secure communication systems based on OPA circuits

机译:基于OPA电路的混沌安全通信系统的实现

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摘要

In this paper, we proposed a novel three-order autonomous circuit to construct a chaotic circuit with double scroll characteristic. The design idea is to use RLC elements and a nonlinear resistor. The one of salient features of the chaotic circuit is that the circuit with two flexible breakpoints of nonlinear element, and the advantage of the flexible breakpoint is that it increased complexity of the dynamical performance. Here, if we take a large and suitable breakpoint value, then the chaotic state can masking a large input signal in the circuit. Furthermore, we proposed a secure communication hyperchaotic system based on the proposed chaotic circuits, where the chaotic communication system is constituted by a chaotic transmitter and a chaotic receiver. To achieve the synchronization between the transmitter and the receiver, we are using a suitable Lyapunov function and Lyapunov theorem to design the feedback control gain. Thus, the transmitting message masked by chaotic state in the transmitter can be guaranteed to perfectly recover in the receiver. To achieve the systems performance, some basic components containing OPA, resistor and capacitor elements are used to implement the proposed communication scheme. From the viewpoints of circuit implementation, this proposed chaotic circuit is superior to the Chua chaotic circuits. Finally, the test results containing simulation and the circuit measurement are shown to demonstrate that the proposed method is correct and feasible. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种新颖的三阶自治电路来构造具有双涡旋特性的混沌电路。设计思想是使用RLC元件和非线性电阻。混沌电路的显着特征之一是该电路具有两个非线性元件的柔性断点,而柔性断点的优点在于它增加了动态性能的复杂性。在这里,如果我们采用较大且合适的断点值,则混沌状态会掩盖电路中的较大输入信号。此外,我们提出了一种基于所提出的混沌电路的安全通信超混沌系统,其中该混沌通信系统由混沌发射机和混沌接收机组成。为了实现发射器和接收器之间的同步,我们使用合适的Lyapunov函数和Lyapunov定理来设计反馈控制增益。因此,可以确保在发送器中被混乱状态掩盖的发送消息在接收器中能够完美地恢复。为了实现系统性能,使用包含OPA,电阻器和电容器元件的一些基本组件来实现所提出的通信方案。从电路实现的角度来看,该混沌电路优于蔡氏混沌电路。最后,通过仿真和电路测试表明,该方法是正确可行的。 (C)2004 Elsevier Ltd.保留所有权利。

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