Multifactorial bumpless transfer for secure output regulation of switched systems under weighted TOD protocol: a dissipativity theory approach
摘要
The employment of bumpless transfer techniques provoked by diverse single inducements to suppress oscillations may lead to conflicts between diverse transient indexes, and potentially lead to system instability. On this account, this article focuses on suppressing oscillations of the control signal provoked by multiple inducements in secure output regulation of switched systems with all unstable subsystems subject to multiple deception attacks utilizing the dissipativity theory. A novel multifactorial bumpless transfer performance is defined to attenuate control oscillations induced by multiple factors involving switching dynamics, event triggers, and deception attacks in dual sensor/communication networks. The refined distributed event-triggered mechanisms are offered associated with the weighted try-once-discard protocol in dual-distributed sensor channels. The dissipativity parameters in them improve the reliability of sensor networks vulnerable to deception attacks. This secure control synthesis is validated via an aero-engine model.