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On Information Transfer in Dynamical Systems with applications in Control of Non-equilibrium Dynamics

机译:动态系统中的信息传递及其在非平衡动力学控制中的应用

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In this paper, we develop the concept of information transfer between the Borel-measurable sets for a dynamical system described by a measurable space and a non-singular transformation. The concept is based on how Shannon entropy is transferred between the measurable sets, as the dynamical system evolves. We show that the proposed definition of information transfer satisfies the usual notions of information transfer and causality, namely, zero transfer and transfer asymmetry. Furthermore, we show how the information transfer measure can be used to characterize ergodicity and mixing in dynamical systems. We also develop the computational methods for information transfer computation and apply the framework for optimal placement of actuators and sensors for control of non-equilibrium dynamics.
机译:在本文中,我们针对由可测量空间和非奇异变换描述的动力学系统,开发了在Borel可测量集之间进行信息传递的概念。该概念基于随着动力系统的发展香农熵如何在可测量集合之间传递。我们表明,提出的信息传递定义满足信息传递和因果关系的通常概念,即零传递和传递不对称。此外,我们展示了如何在动态系统中使用信息传递度量来表征遍历性和混合性。我们还开发了用于信息传递计算的计算方法,并将该框架应用于执行器和传感器的最佳放置,以控制非平衡动力学。

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