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Event-triggered feedback control for delayed singular jump systems based on sampled observer and exponential detector
International Journal of Robust and Nonlinear Control ( IF 3.2 ) Pub Date : 2021-07-13 , DOI: 10.1002/rnc.5679
Guangming Zhuang 1 , Jianwei Xia 1 , Qian Ma 2 , Wei Sun 1 , Yanqian Wang 3
Affiliation  

This paper is intended to investigate the problem of event-triggered urn:x-wiley:rnc:media:rnc5679:rnc5679-math-0004 feedback control for time-varying delays singular jump systems based on sampled observer and exponential detector. By virtue of the designed event-triggered control strategies, the state estimate signals are transmitted to the controller under the networked communication environment and aperiodic sampling scheme. The driving threshold is devised by exponentially decreasing function, which is used to guarantee not only the validity of event-triggered strategy but also the admissibility of the delayed singular jump systems. Neoteric stochastic admissibility, stabilization and urn:x-wiley:rnc:media:rnc5679:rnc5679-math-0005 performance conditions are obtained in terms of linear matrix inequalities. Simulation examples including an oil catalytic cracking process are utilized to illustrate the validity and superiority of the proposed event-triggered feedback control technique.

中文翻译:

基于采样观测器和指数检测器的延迟奇异跳跃系统的事件触发反馈控制

本文旨在研究骨灰盒:x-wiley:rnc:媒体:rnc5679:rnc5679-math-0004基于采样观测器和指数检测器的时变延迟奇异跳跃系统的事件触发反馈控制问题。凭借设计的事件触发控制策略,状态估计信号在网络化通信环境和非周期采样方案下传输到控制器。驱动阈值采用指数递减函数设计,既保证了事件触发策略的有效性,又保证了延迟奇异跳跃系统的可接受性。近代随机可容许性、稳定性和urn:x-wiley:rnc:media:rnc5679:rnc5679-math-0005性能条件是根据线性矩阵不等式获得的。利用包括石油催化裂化过程在内的模拟实例来说明所提出的事件触发反馈控制技术的有效性和优越性。
更新日期:2021-09-02
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