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Controlling transient chaos in deterministic flows with applications to electrical power systems and ecology

机译:在确定性流中控制瞬态混沌及其在电力系统和生态学中的应用

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摘要

Transient chaos is a common phenomenon in nonlinear dynamics of many physical, biological, and engineering systems. In applications it is often desirable to maintain sustained chaos even in parameter regimes of transient chaos. We address how to sustain transient chaos in deterministic flows. We utilize a simple and practical method, based on extracting the fundamental dynamics from time series, to maintain chaos. The method can result in control of trajectories from almost all initial conditions in the original basin of the chaotic attractor from which transient chaos is created. We apply our method to three problems: (1) voltage collapse in electrical power systems, (2) species preservation in ecology, and (3) elimination of undesirable bursting behavior in a chemical reaction system. [S1063-651X(99)04902-8]. [References: 39]
机译:瞬态混沌是许多物理,生物和工程系统的非线性动力学中的常见现象。在应用中,经常希望即使在瞬态混沌的参数范围内也要保持持续的混沌。我们解决如何在确定性流中维持短暂的混乱。我们基于从时间序列中提取基本动力学的基础上,采用一种简单实用的方法来保持混乱。该方法可以导致从混沌吸引子的原始盆地中的几乎所有初始条件控制轨迹,由此产生瞬态混沌。我们将我们的方法应用于三个问题:(1)电力系统中的电压崩溃,(2)生态中的物种保护,以及(3)消除化学反应系统中不良的爆炸行为。 [S1063-651X(99)04902-8]。 [参考:39]

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