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Chaos Synchronization for Hyperchaotic Lorenz-Type System via Fuzzy-Based Sliding-Mode Observer

机译:基于模糊的滑动模式观察器的超声洛伦兹型系统混沌同步

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Hyperchaotic systems have applications in multiple areas of science and engineering. The study and development of these type of systems helps to solve diverse problems related to encryption and decryption of information. In order to solve the chaos synchronization problem for a hyperchaotic Lorenz-type system, we propose an observer based synchronization under a master-slave configuration. The proposed methodology consists of designing a sliding-mode observer (SMO) for the hyperchaotic system. In contrast, this type of methodology exhibits high-frequency oscillations, commonly known as chattering. To solve this problem, a fuzzy-based SMO system was designed. Numerical simulations illustrate the effectiveness of the synchronization between the hyperchaotic system obtained and the proposed observer.
机译:高性能系统在多个科学和工程领域具有应用。这些类型系统的研究和开发有助于解决与信息的加密和解密相关的多样化问题。为了解决超声Lorenz型系统的混沌同步问题,我们在主从配置下提出了基于观察者的同步。所提出的方法包括为超色度系统设计滑模观察者(SMO)。相比之下,这种类型的方法表现出高频振荡,通常称为抖动。为了解决这个问题,设计了一种模糊的SMO系统。数值模拟说明了所获得的超声系统与所提出的观察者之间的同步的有效性。

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