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Aperiodic Sampled-Data-Based Control for Interval Type-2 Fuzzy Systems via Refined Adaptive Event-Triggered Communication Scheme

机译:通过精制自适应事件触发的通信方案对间隔类型-2模糊系统的基于非周期性采样数据控制

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摘要

This article is devoted to event-triggered stabilization for a class of interval type-2 (IT2) fuzzy systems with aperiodic sampling. First, the IT2 Takagi-Sugeno fuzzy model and sampled-data controllers are established subject to mismatched membership functions. Second, considering a nonuniform sampling case, a refined adaptive event-triggered communication scheme is proposed in a hierarchy form to dynamically adjust the direction and rate of the event-triggered threshold parameter by state changing trend and relative state error, respectively. Thus, a complete dual-directional regulating mechanism with sensitivity to state variation is reasonably created to give extra flexibility, which is beneficial for a preferable tradeoff between control performance and network resource. Third, considering the practical behaviors on the sampling interval, a novel integral type of time-dependent Lyapunov function is constructed. Then, the stability criterion and the controller design approach are derived. Finally, the numerical examples are provided to demonstrate the effectiveness and advantages of the proposed methods.
机译:本文致力于具有非周期性采样的一类间隔Type-2(IT2)模糊系统的事件触发稳定。首先,建立IT2 Takagi-Sugeno模糊模型和采样数据控制器,以进行不匹配的隶属函数。其次,考虑到不均匀的采样情况,以层次结构提出了一种精细的自适应事件触发的通信方案,以通过分别通过状态改变趋势和相对状态误差动态地调整事件触发阈值参数的方向和速率。因此,合理地创建具有对状态变化敏感性的完整双向调节机制,以提供额外的灵活性,这对于控制性能和网络资源之间的优选权衡有益。第三,考虑到采样间隔的实际行为,构建了一种新颖的积分类型的时间依赖性Lyapunov函数。然后,导出稳定性标准和控制器设计方法。最后,提供了数值例子以证明所提出的方法的有效性和优点。

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