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This brief studies dynamic event-triggered iterative filter and fault compensation control for PMSG-based wind turbine systems under deception attack. System output is assumed to be tampered with a deception attack signal. An event generator is driven by a sector-threshold dynamic triggering criterion to reduce transmissions. An iterative filtering and fault compensation framework is constructed to compensate the system faults. Finally, a comparison simulation is provided to verify the proposed scheme.
Gu et al. (Fri,) studied this question.