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Observer-Based Tracker for Analog Systems with Saturating Actuators and State Constraints Using Digital Redesign and a Weighted Switching Strategy

机译:使用数字重新设计和加权切换策略的基于饱和观测器和状态约束的模拟系统的基于观测器的跟踪器

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In this paper, we propose a new dual-rate, observer-based control scheme utilizing digital redesign and a weighted switching strategy for cascaded systems with saturating actuators and state constraints. The weighted switching approach, which uses an evolutionary programming optimal search technique, improves the generally poor transition response caused by nonlinear constraints on saturating actuators and state constraints. An inner loop state compensator is provided to correct the windup effects on the actuator. The designed scheme can easily be implemented using digital processors and enables us to improve the performance of cascaded systems with saturating actuators and state constraints. An illustrative example is presented to demonstrate the effectiveness of the proposed methodology.
机译:在本文中,我们针对具有饱和执行器和状态约束的级联系统,提出了一种利用数字重新设计和加权切换策略的新的基于观测器的双速率控制方案。加权切换方法使用一种进化编程的最佳搜索技术,可以改善由于饱和执行器上的非线性约束和状态约束而引起的通常较差的过渡响应。提供内环状态补偿器以校正对执行器的缠绕影响。设计的方案可以使用数字处理器轻松实现,并使我们能够通过饱和的执行器和状态约束来改善级联系统的性能。给出了一个说明性示例,以证明所提出方法的有效性。

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