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Submodularity in Input Node Selection for Networked Linear Systems: Efficient Algorithms for Performance and Controllability

机译:网络线性系统输入节点选择中的亚模量:性能和可控性的高效算法

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Networked systems are systems of interconnected components in which the dynamics of each component (often referred to as a node or agent) are influenced by the behavior of neighboring components. Examples of networked systems include biological networks, ranging in scale from the gene interactions within a single cell to food webs of an entire ecosystem, and critical infrastructures such as power grids, transportation systems, the Internet, and social networks. The growing importance of such systems has led to an interest in the control of networks to ensure performance, stability, robustness, and resilience. Indeed, over the past several decades, a variety of control-theoretic methods has been employed to better understand and control networked systems. Moreover, new subdisciplines of control theory have emerged, including networked control systems (where plants, sensors, and actuators are connected by communication networks) and control of cyberphysical systems.
机译:联网系统是相互连接的组件的系统,其中每个组件(通常称为节点或代理)的动态受相邻组件的行为影响。联网系统的示例包括生物网络,其范围从单个细胞内的基因相互作用到整个生态系统的食物网,以及诸如电网,交通系统,互联网和社交网络等关键基础设施。这种系统的重要性日益提高,引起了对网络控制以确保性能,稳定性,鲁棒性和弹性的兴趣。实际上,在过去的几十年中,已经采用了各种控制理论方法来更好地理解和控制网络系统。而且,出现了控制理论的新分支学科,包括网络控制系统(其中工厂,传感器和执行器通过通信网络连接)和网络物理系统的控制。

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