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Delay-dependent dissipative control for a class of non-linear system via Takagi-sugeno fuzzy descriptor model with time delay

机译:一类具有时滞的Takagi-sugeno模糊描述符模型对一类非线性系统的时滞相关耗散控制

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摘要

This paper studies the dissipative control problems for the non-linear descriptor system via a Takagi-Sugeno descriptor model with time delay and uncertainties. The considered systems are not necessarily regular or impulse free. Using the free-weighting-matrix approach combined with the developed linear matrix inequality techniques, the authors proposed an improved delay-dependent stability criterion to guarantee the system to be admissible. Based on this criterion, the solvable conditions for the existence of dissipative controller are derived, which guarantees that the closed-loop system is not only admissible but also strictly dissipative for all admissible uncertainties. The proposed method is more suitable for the robust stability analysis and control synthesis. Moreover, different control processes can be achieved for the targeted systems in the same design process. Therefore it could potentially reduce cost and time in the controller design for an actual physical system. The authors perform simulations to validate the obtained method for practical examples.
机译:本文通过具有时滞和不确定性的Takagi-Sugeno描述符模型研究了非线性描述符系统的耗散控制问题。所考虑的系统不一定是规则的或无脉冲的。使用自由加权矩阵方法并结合已开发的线性矩阵不等式技术,作者提出了一种改进的依赖于延迟的稳定性准则,以确保系统是可接受的。基于该准则,推导了存在耗散控制器的可解条件,这保证了闭环系统不仅对于所有可容许的不确定性都是可容许的,而且是严格耗散的。所提出的方法更适合于鲁棒稳定性分析和控制综合。而且,可以在同一设计过程中针对目标系统实现不同的控制过程。因此,它可能会减少实际物理系统的控制器设计中的成本和时间。作者进行了仿真,以验证所获得的方法用于实际示例。

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