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Secure communication with the help of flat inputs for chaotic systems ?

机译:借助用于混沌系统的平面输入的安全通信

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In this paper, we explain how flatness (in particular, how constructing flat inputs) can be applied to secure communication systems via chaotic models. In order to send confidential messages, we use a transmitter whose dynamics are a flat control system steaming from a dynamical one (with no inputs) originally composed by two independent chaotic subsystems (a Chua and a R?ssler circuit, resp.). We explain how from the original dynamical (chaotic) system we can construct a flat control system, the flatness property being achieved by adding control vector fields or, equivalently, inputs. Such inputs are called flat inputs in Waldherr and Zeitz (2008, 2010) since they lead to a flat control system. In our construction, adding inputs is done in a minimal way because they affect only three components of the original dynamical chaotic system. We show numerically that the chaotic behavior of the dynamical system is preserved for the control system (which is crucial for secure communication).
机译:在本文中,我们解释了如何通过混沌模型将平面度(尤其是如何构造平面输入)应用于安全通信系统。为了发送机密消息,我们使用一种发射机,该发射机的动态是一个平面控制系统,该系统从最初由两个独立的混沌子系统(分别为Chua和R?ssler电路)组成的动态系统(无输入)产生。我们将说明如何从原始的动力学(混沌)系统构建平面控制系统,该平面度属性是通过添加控制矢量场或等效输入来实现的。这些输入在Waldherr和Zeitz(2008,2010)中被称为统一输入,因为它们导致了统一控制系统。在我们的构造中,以最小的方式添加输入,因为它们仅影响原始动态混沌系统的三个组成部分。我们用数字显示,动力学系统的混沌行为对于控制系统得以保留(这对于安全通信至关重要)。

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