On Smith predictor-based controller design for systems with integral action and time delay

U. Tasdelen, H. Özbay
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引用次数: 9

Abstract

A new Smith predictor based controller is proposed for systems with integral action and flexible modes under input-output time-delay. The design uses controller parametrization and aims to achieve a set of performance and robustness objectives. Compared to existing Smith predictor based designs, disturbance attenuation property is improved, with respect to periodic disturbances at a known frequency. A two-degree of freedom controller structure is shown to be helpful in shaping the transient response under constant reference inputs. Stability robustness properties of this system are also investigated. Simulation results demonstrate the effectiveness of the proposed controller.
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基于Smith预测器的积分作用时滞系统控制器设计
针对输入输出时滞下具有积分作用和柔性模态的系统,提出了一种新的基于Smith预测器的控制器。该设计使用控制器参数化,旨在实现一组性能和鲁棒性目标。与现有的基于Smith预测器的设计相比,相对于已知频率的周期性干扰,干扰衰减性能得到了改善。在恒定参考输入下,二自由度控制器结构有助于形成瞬态响应。研究了该系统的稳定性和鲁棒性。仿真结果验证了该控制器的有效性。
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