Sun Jiayue, Zhang Huaguang, Wang Yingchun, Sun Shaoxin
IEEE Trans Cybern. 2022 Feb;52(2):1335-1346. doi: 10.1109/TCYB.2020.2997348. Epub 2022 Feb 16.
This article devotes to solve the fault-tolerant control problem based on interval type-2 (IT2) Takagi-Sugeno (T-S) fuzzy stochastic switched uncertain time-delayed systems with signal quantization. Stochastic switched systems can model a dynamic structure susceptible to abrupt faults, making it more practically significant in power systems or economic systems. The core design is an observer-based fault-tolerant control scheme that can estimate incomplete measurable variables and eliminate the influence of fault dynamically well and enhancing the robust stability of the systems subject to quantization effects. A novel method in seeking the upper bound solution of time-varying delay efficiently decreases conservativeness, especially for the proposed time-delayed system. The simulated analysis is specified to verify the availability and validity of the obtained design method.
本文致力于解决基于区间二型(IT2)Takagi-Sugeno(T-S)模糊随机切换不确定时滞系统且带有信号量化的容错控制问题。随机切换系统能够对易受突发故障影响的动态结构进行建模,这使其在电力系统或经济系统中具有更强的实际意义。核心设计是一种基于观测器的容错控制方案,该方案能够估计不完全可测变量,并有效动态消除故障影响,同时增强受量化影响系统的鲁棒稳定性。一种有效求解时变延迟上界解的新方法有效降低了保守性,特别是对于所提出的时滞系统。通过仿真分析来验证所获设计方法的可用性和有效性。