Department of Manufacturing Engineering and Engineering Management, City University of Hong Kong, Hong Kong, People's Republic of China.
Chaos. 2009 Sep;19(3):033128. doi: 10.1063/1.3212940.
The robust synchronization problem is studied in this paper for uncertain chaotic Lur'e systems. It is assumed that the mismatched parameter uncertainties appear in the master system and are norm bounded. An integral sliding mode control approach is developed to address this problem. First, a suitable integral sliding surface is constructed, and a delay-dependent condition by means of linear matrix inequalities is derived under which the resulting error system is globally asymptotically stable in the specified switching surface. Then, an integral sliding mode controller is designed guaranteeing the reachability of the specified sliding surface. When the bounds of the mismatched parameter uncertainties are unknown, an adaptive integral sliding mode controller is further designed. Finally, the Chua's circuit is provided as an example to demonstrate the effectiveness of the developed approach.
本文研究了不确定混沌 Lur'e 系统的鲁棒同步问题。假设主系统中存在不匹配的参数不确定性,且其范数有界。为此,开发了一种积分滑模控制方法。首先,构造了一个合适的积分滑动面,并通过线性矩阵不等式推导出一个时滞相关条件,在此条件下,所得到的误差系统在指定的切换面上全局渐近稳定。然后,设计了一个积分滑模控制器,以保证指定滑动面的可达性。当不匹配参数不确定性的界未知时,进一步设计了自适应积分滑模控制器。最后,通过蔡氏电路实例验证了所提出方法的有效性。