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Dynamic Constraint-Driven Event-Triggered Control of Strict-Feedback Systems Without Max/Min Values on Irregular Constraints 被引量:1
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作者 Zhuwu Shao Yujuan Wang +1 位作者 Zeqiang Li Yongduan Song 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2024年第3期569-580,共12页
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 irregu... 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 considered and a constraints switching mechanism(CSM)is introduced 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.Simulation also verifies the effectiveness and benefits of the proposed method. 展开更多
关键词 Adaptive control dynamic constraint-driven event-triggered control irregular output constraints nonlinear strict-feed-back systems
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基于S类函数的严格反馈非线性周期系统的自适应控制 被引量:7
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作者 朱胜 孙明轩 何熊熊 《自动化学报》 EI CSCD 北大核心 2010年第8期1137-1143,共7页
针对一类严格反馈非线性周期系统,在周期非线性可时变参数化的条件下设计自适应控制器.通过将周期时变参数展开成傅里叶级数,并采用微分自适应律估计未知系数,进行控制器反推设计.引入S类函数,并在控制器设计中应用S类函数处理截断误差... 针对一类严格反馈非线性周期系统,在周期非线性可时变参数化的条件下设计自适应控制器.通过将周期时变参数展开成傅里叶级数,并采用微分自适应律估计未知系数,进行控制器反推设计.引入S类函数,并在控制器设计中应用S类函数处理截断误差项对系统跟踪性能的影响,同时,S类函数能确保虚拟控制的可微.给出几种不同的S类函数设计,分析比较将其应用于控制器设计时产生的不同效果.理论分析与仿真结果表明,提出的控制方法能够实现系统输出跟踪期望轨迹,且闭环系统所有信号有界. 展开更多
关键词 非线性周期系统 自适应控制 S类函数 严格反馈非线性系统 反推设计
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