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An Adaptive Centralized Approach to Control Chaotic and Hyperchaotic Dynamics of Smart Valves Network

机译:一种控制智能阀网络混沌和超谐波动态的自适应集中方法

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摘要

Catastrophic chaotic and hyperchaotic dynamical behaviors have been experimentally observed in the so-called "smart valves" network, given certain critical parameters and initial conditions. The centralized network-based control of these coupled systems may effectively mitigate the harmful dynamics of the valve-actuator configuration which can be potentially caused by a remote set and would gradually affect the whole network. In this work, we address the centralized control of two bi-directional solenoid actuated butterfly valves dynamically coupled in series subject to the chaotic and hyperchaotic dynamics. An interconnected adaptive scheme is developed and examined to vanish both the chaotic and hyperchaotic dynamics and return the coupled network to its safe domain of operation.
机译:在所谓的“智能阀”网络中,已经在实验中观察到灾难性的混沌和超声动力学行为,给出了某些关键参数和初始条件。 对这些耦合系统的集中式基于网络的控制可以有效地减轻阀致动器配置的有害动态,该阀致动器配置可以由远程集潜在地引起并且将逐渐影响整个网络。 在这项工作中,我们解决了两个双向螺线管致动蝶阀的集中控制,串联串联耦合在混沌和超复态动态。 开发并检查互连的自适应方案以消失混沌和超复态动态,并将耦合网络返回其安全操作领域。

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