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Observability and Controllability of Nonlinear Networks: The Role of Symmetry

机译:非线性网络的可观性和可控性:对称性的作用

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摘要

Observability and controllability are essential concepts to the design of predictive observer models and feedback controllers of networked systems. For example, noncontrollable mathematical models of real systems have subspaces that influence model behavior, but cannot be controlled by an input. Such subspaces can be difficult to determine in complex nonlinear networks. Since almost all of the present theory was developed for linear networks without symmetries, here we present a numerical and group representational framework, to quantify the observability and controllability of nonlinear networks with explicit symmetries that shows the connection between symmetries and nonlinear measures of observability and controllability. We numerically observe and theoretically predict that not all symmetries have the same effect on network observation and control. Our analysis shows that the presence of symmetry in a network may decrease observability and controllability, although networks containing only rotational symmetries remain controllable and observable. These results alter our view of the nature of observability and controllability in complex networks, change our understanding of structural controllability, and affect the design of mathematical models to observe and control such networks.
机译:可观察性和可控制性是设计预测观察者模型和网络系统的反馈控制器的基本概念。例如,实际系统的不可控数学模型具有影响模型行为的子空间,但不能由输入控制。在复杂的非线性网络中,很难确定此类子空间。由于几乎所有当前理论都是针对没有对称性的线性网络开发的,因此在此我们提出一个数值和组表示框架,以量化具有明确对称性的非线性网络的可观察性和可控制性,从而显示对称性与可观察性和可控制性的非线性度量之间的联系。我们从数值上观察并从理论上预测,并非所有对称性都对网络观察和控制具有相同的影响。我们的分析表明,网络中对称性的存在可能会降低可观察性和可控性,尽管仅包含旋转对称性的网络仍可控制和可观察。这些结果改变了我们对复杂网络中可观性和可控性本质的看法,改变了我们对结构可控性的理解,并影响了观察和控制此类网络的数学模型的设计。

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