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Bringing order to chaos: Hybrid modelling of a discontinuous chaotic system

机译:带来混乱:不连续混沌系统的混合建模

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We propose a computational-oriented perspective within the study of discontinuous chaotic systems, and provide insights into the modelling, control and simulation of chaotic systems with switching dynamics. In particular, the Lorenz system in its piecewise-linear version is studied. This system is reinterpreted within the hybrid-automaton framework, and what is referred to as the Lorenz hybrid automaton is established. Furthermore, a discontinuous control which eliminates the chaotic behaviour and steers the trajectories to a desired equilibrium is proposed. An integral characteristic of the modelling framework is that the controlled system, exhibiting three discontinuity surfaces, is reduced to the composition of several Lorenz hybrid automata. The approach proposed here is especially useful in order to specify the transitions between the different system operation modes, which becomes a crucial problem due to the existence of multiple switching surfaces.
机译:我们在不连续混沌系统的研究中提出了一种面向计算的观点,并提供了具有切换动力学的混沌系统的建模,控制和仿真的见解。特别地,研究了分段线性版本的Lorenz系统。在混合自动机框架内重新解释了该系统,并建立了所谓的Lorenz混合自动机。此外,提出了一种不连续控制,其消除了混沌行为并且使轨迹转向期望的平衡。建模框架的一个整体特征是,具有三个不连续表面的受控系统被简化为多个Lorenz混合自动机的组成。此处提出的方法对于指定不同系统操作模式之间的过渡特别有用,由于存在多个开关表面,这成为一个关键问题。

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