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首页> 外文期刊>Journal of nonlinear science >'Invariance-inducing' control of nonlinear discrete-time dynamical systems
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'Invariance-inducing' control of nonlinear discrete-time dynamical systems

机译:非线性离散时间动态系统的“不变性诱导”控制

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摘要

The present study aims at the derivation of model-based control laws that attain the invariance objective for nonlinear skew-product discrete-time dynamical systems. The problem under consideration naturally arises in a variety of control problems pertaining to physical/chemical systems, and in the present study, it is conveniently formulated and addressed in the context of functional equations theory. In particular, the mathematical formulation of the problem of interest is realized via a system of nonlinear functional equations (NFEs), and a rather general set of necessary and sufficient conditions for solvability is derived. The solution to the above system of NFEs can be proven to be a unique locally analytic one, and this enables the development of a series solution method that is easily programmable with the aid of a symbolic software package such as MAPLE. It is also shown that, on the basis of the solution to the above system of NFEs, a locally analytic manifold and a nonlinear control law can be explicitly derived that renders the manifold invariant for the class of skew-product systems considered. Furthermore, the restriction of the system dynamics on the aforementioned invariant manifold represents exactly the target controlled system dynamics. Finally, the proposed method is applied to the HF molecular system classically modeled as a rotationless Morse oscillator in the presence of an external laser-field, where the primary objective is molecular dissociation. [References: 51]
机译:本研究旨在推出基于模型的控制法,该规律达到非线性偏斜产品离散时间动态系统的不变目标。在与物理/化学系统有关的各种控制问题中,所考虑的问题自然出现,并且在本研究中,在功能方程理论的背景下方便地配制和解决。特别地,通过非线性功能方程(NFES)的系统实现了感兴趣问题的数学制剂,并且得出了一种相当一般的必要条件的可溶性条件。可以证明上述NFES系统的解决方案是独特的本地分析,这使得这使得能够借助诸如枫树等象征性软件包轻松编程的串联解决方法。还示出了,基于对NFES的上述系统的解决方案,可以明确地推导出局部分析歧管和非线性控制规律,使得考虑偏斜产品系统的歧管不变。此外,对上述不变歧管上的系统动态的限制恰好地表示目标受控系统动态。最后,将所提出的方法应用于在外部激光场的存在下在存在外部激光场的情况下经典地建模的HF分子系统,其中主要目的是分子解离。 [参考:51]

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