Engineering Research Center of Internet of Things Technology Applications Ministry of Education, Jiangnan University, Wuxi 214122, China.
Jiangsu Provincial Sensor Network Engineering Technology Research Center, Wuxi Institute of Technology, Wuxi 214121, China.
Sensors (Basel). 2018 Jun 13;18(6):1929. doi: 10.3390/s18061929.
This paper proposes two novel, event-triggered fault-tolerant control strategies for a class of stochastic systems with state delays. The plant is disturbed by a Gaussian process, actuator faults, and unknown disturbances. First, a special case about fault signals that are coupled to the unknown disturbances is discussed, and then a fault-tolerant strategy is designed based on an event condition on system states. Subsequently, a send-on-delta transmission framework is established to deal with the problem of fault-tolerant control strategy against fault signals separated from the external disturbances. Two criteria are provided to design feedback controllers in order to guarantee that the systems are exponentially mean-square stable, and the corresponding H∞-norm disturbance attenuation levels are achieved. Two theorems were obtained by synthesizing the feedback control gains and the desired event conditions in terms of linear matrix inequalities (LMIs). Finally, two numerical examples are provided to illustrate the effectiveness of the proposed theoretical results.
本文针对一类具有状态时滞的随机系统,提出了两种新颖的事件触发容错控制策略。该系统受到高斯过程、执行器故障和未知干扰的干扰。首先,讨论了故障信号与未知干扰相耦合的特殊情况,然后基于系统状态的事件条件设计了一种容错策略。随后,建立了一个 send-on-delta 传输框架来处理针对与外部干扰分离的故障信号的容错控制策略问题。提出了两个准则来设计反馈控制器,以保证系统指数均方稳定,并达到相应的 H∞-范数干扰衰减水平。通过合成反馈控制增益和基于线性矩阵不等式(LMI)的期望事件条件,得到了两个定理。最后,通过两个数值例子说明了所提出的理论结果的有效性。