Dynamic Constraint-Driven Event-Triggered Con-trol of Strict-Feedback Systems Without Max/Min Values on Irregular ConstraintsOA北大核心CSTPCD
Dynamic Constraint-Driven Event-Triggered Con-trol of Strict-Feedback Systems Without Max/Min Values on Irregular Constraints
This work proposes an event-triggered adaptive control approach for a class of uncertain nonlinear systems under irregular constraints.Unlike the constraints considered in most existing papers,here the external irregular constraints are con-sidered and a constraints switching mechanism(CSM)is intro-duced to circumvent the difficulties arising from irregular output constraints.Based on the CSM,a new class of generalized barrier functions are constructed,which allows the control results to be independent of the maximum and minimum values(MMVs)of constraints and thus extends the existing results.Finally,we proposed a novel dynamic constraint-driven event-triggered strategy(DCDETS),under which the stress on signal transmission is reduced greatly and no constraints are violated by making a dynamic trade-off among system state,external constraints,and inter-execution intervals.It is proved that the system output is driven to close to the reference trajectory and the semi-global stability is guaranteed under the proposed control scheme,regardless of the external irregular output constraints.Simula-tion also verifies the effectiveness and benefits of the proposed method.
Zhuwu Shao;Yujuan Wang;Zeqiang Li;Yongduan Song
State Key Laboratory of Power Transmission Equipment & System Security and New Technology,and the School of Automation,Chongqing University,Chongqing 400044,China
Adaptive controldynamic constraint-driven event-triggered controlirregular output constraintsnonlinear strict-feed-back systems
《自动化学报(英文版)》 2024 (003)
569-580 / 12
This work was supported in part by the National Key Research and Development Program of China(2023YFA1011803),the National Natural Science Foundation of China(62273064,61933012,62250710167,61860206008,62203078),and the Central University Project(2021CDJCGJ002,2022CDJKYJH019,2022CD JKYJH051).
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