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  • Data driven discovery of cy...
    Yuan, Ye; Tang, Xiuchuan; Zhou, Wei; Pan, Wei; Li, Xiuting; Zhang, Hai-Tao; Ding, Han; Goncalves, Jorge

    Nature communications, 10/2019, Volume: 10, Issue: 1
    Journal Article

    Cyber-physical systems embed software into the physical world. They appear in a wide range of applications such as smart grids, robotics, and intelligent manufacturing. Cyber-physical systems have proved resistant to modeling due to their intrinsic complexity arising from the combination of physical and cyber components and the interaction between them. This study proposes a general framework for discovering cyber-physical systems directly from data. The framework involves the identification of physical systems as well as the inference of transition logics. It has been applied successfully to a number of real-world examples. The novel framework seeks to understand the underlying mechanism of cyber-physical systems as well as make predictions concerning their state trajectories based on the discovered models. Such information has been proven essential for the assessment of the performance of cyber-physical systems; it can potentially help debug in the implementation procedure and guide the redesign to achieve the required performance.