Liu Yiqun, Zhuang Guangming, Wang Zekun, Wang Yanqian
School of Mathematical Sciences, Liaocheng University, Liaocheng Shandong 252059, PR China.
School of Information and Control Engineering, Qingdao University of Technology, Qingdao, 266520, PR China.
ISA Trans. 2024 Dec;155:104-124. doi: 10.1016/j.isatra.2024.09.028. Epub 2024 Oct 3.
This article researches the issue of robust non-fragile hybrid control for delayed uncertain singular impulsive jump systems (USIMJSs). The key aim is to design non-fragile hybrid state feedback controllers (including a non-fragile normal state feedback controller and a non-fragile impulsive state feedback controller), which are insensitive to the uncertainties of gains of controllers and can provide sufficient tuning margins. The non-fragile normal state feedback controller can eliminate the internal impulses and overcome the external disturbances; the non-fragile impulsive state feedback controller can suppress the interference of external unstable impulses and restrain the instantaneous jumps caused by Markovian modes switching. By introducing impulse instant-dependent auxiliary functions, the improved impulse-time-dependent Lyapunov-Krasovskii functional is constructed, which can capture the information of the impulse instants and Markovian jump modes. Novel criteria of robust admissibilization for delayed USIMJSs are acquired under linear matrix inequalities framework. Lastly, the effectiveness of the derived algorithm and designed method is confirmed by simulation examples including a direct current motor-controlled inverted pendulum device and a Quarter-Car active suspension model.
本文研究了时滞不确定奇异脉冲跳跃系统(USIMJSs)的鲁棒非脆弱混合控制问题。关键目标是设计非脆弱混合状态反馈控制器(包括非脆弱正常状态反馈控制器和非脆弱脉冲状态反馈控制器),该控制器对控制器增益的不确定性不敏感,并能提供足够的调节裕度。非脆弱正常状态反馈控制器可以消除内部脉冲并克服外部干扰;非脆弱脉冲状态反馈控制器可以抑制外部不稳定脉冲的干扰,并抑制由马尔可夫模式切换引起的瞬时跳跃。通过引入依赖于脉冲时刻的辅助函数,构造了改进的依赖于脉冲时间的Lyapunov-Krasovskii泛函,该泛函可以捕捉脉冲时刻和马尔可夫跳跃模式的信息。在线性矩阵不等式框架下,获得了时滞USIMJSs鲁棒容许性的新判据。最后,通过包括直流电机控制的倒立摆装置和四分之一车主动悬架模型在内的仿真例子,验证了所推导算法和设计方法的有效性。