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Robust reliable Sliding Mode H_∞ Control for Uncertain Stochastic Nonlinear Jump Systems with actuator failures

机译:具有执行器故障的不确定随机非线性跳转系统的鲁棒可靠滑动模式H_∞控制

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The problems of stochastic stability and robust reliable sliding mode H_∞ control for a class of nonlincar matched and mismatched uncertain systems with stochastic jumps are considered in this paper. A more practical model of actuator failures than outage is considered. Based on the state feedback method, the resulting closed-loop systems are reliable in that they remain robust stochastically stable and satisfy a certain level of H_∞ disturbance attenuation not only when all actuators are operational, but also in case of some actuator failures. The uncertain system under consideration may have mismatched norm bounded uncertainties in the state matrix. The transition of the jumping parameters in the systems is governed by a finite-state markov process. A sufficient condition is given for the existence of integral sliding surface in terms of linear matrix inequalities (LM Is). Then, a reaching motion controller is designed such that the resulting closed-loop system can be driven onto the desired sliding surface in finite time. Moreover, a state feedback controller is also constructed by using the solution of LMIS. Finally, we give a design example in order to show the effectiveness of our method.
机译:本文考虑了一类非林纳匹配和不匹配不确定系统的随机稳定性和鲁棒可靠滑动模式H_∞控制的问题。考虑了比中断更实际的执行器故障模型。基于状态反馈方法,所得到的闭环系统可靠,因为它们保持坚固的随机稳定,并且不仅在所有致动器都是可操作的时,而且满足一定水平的H_∞扰动衰减,而且在某些致动器故障的情况下也是如此。所考虑的不确定系统可能在状态矩阵中具有不匹配的常态不确定性。系统中跳跃参数的转换由有限状态马尔可夫过程管理。在线性矩阵不等式(LM)方面,给出了足够的条件以存在整体滑动表面(LM)。然后,设计达到运动控制器,使得所得到的闭环系统可以在有限的时间内被驱动到所需的滑动表面上。此外,还通过使用LMI的解决方案来构建状态反馈控制器。最后,我们提供了一个设计示例,以便显示我们方法的有效性。

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