Hua C, Guan X
Institute of Electrical Engineering, Ynashan University, Qinhuangdao City, China.
IEEE Trans Neural Netw. 2008 Apr;19(4):673-88. doi: 10.1109/TNN.2007.912318.
In this paper, dynamic output feedback control problem is investigated for a class of nonlinear interconnected systems with time delays. Decentralized observer independent of the time delays is first designed. Then, we employ the bounds information of uncertain interconnections to construct the decentralized output feedback controller via backstepping design method. Based on Lyapunov stability theory, we show that the designed controller can render the closed-loop system asymptotically stable with the help of the changing supplying function idea. Furthermore, the corresponding decentralized control problem is considered under the case that the bounds of uncertain interconnections are not precisely known. By employing the neural network approximation theory, we construct the neural network output feedback controller with corresponding adaptive law. The resulting closed-loop system is stable in the sense of semiglobal boundedness. The observers and controllers constructed in this paper are independent of the time delays. Finally, simulations are done to verify the effectiveness of the theoretic results obtained.
本文研究了一类具有时滞的非线性互联系统的动态输出反馈控制问题。首先设计了与时间延迟无关的分散观测器。然后,利用不确定互联的界信息,通过反步设计方法构造了分散输出反馈控制器。基于李雅普诺夫稳定性理论,借助变化供应函数的思想,证明了所设计的控制器能使闭环系统渐近稳定。此外,考虑了不确定互联界不完全已知情况下的相应分散控制问题。通过运用神经网络逼近理论,构造了具有相应自适应律的神经网络输出反馈控制器。所得闭环系统在半全局有界意义下是稳定的。本文构造的观测器和控制器与时间延迟无关。最后,通过仿真验证了所获理论结果的有效性。