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Design of PID controllers satisfying gain margin and sensitivity constraints on a set of plants

机译:满足一组工厂的增益裕度和灵敏度约束的PID控制器的设计

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This paper presents a method for the design of PID-type controllers, including those augmented by a filter on the D element, satisfying a required gain margin and an upper bound on the (complementary) sensitivity for a finite set of plants. Important properties of the method are: (i) it can be applied to plants of any order including non-minimum phase plants, plants with delay, plants characterized by quasi-polynomials, unstable plants and plants described by measured data, (ii) the sensors associated with the PI terms and the D term can be different (i.e., they can have different transfer function models), (iii) the algorithm relies on explicit equations that can be solved efficiently, (iv) the algorithm can be used in near real-time to determine a controller for on-line modification of a plant accounting for its uncertainty and closed-loop specifications, (v) a single plot can be generated that graphically highlights tradeoffs among the gain margin, (complementary) sensitivity bound, low-frequency sensitivity and high-frequency sensor noise amplification, and (vi) the optimal controller for a practical definition of optimality can readily be identified.
机译:本文提出了一种PID型控制器的设计方法,其中包括那些通过D元素上的滤波器进行扩展的PID控制器,它满足了有限植物一组所需的增益裕度和(互补)灵敏度的上限。该方法的重要特性是:(i)它可以应用于任何阶次的植物,包括非最小相植物,延迟植物,以拟多项式表征的植物,不稳定的植物和实测数据描述的植物,(ii)与PI项和D项关联的传感器可以不同(即,它们可以具有不同的传递函数模型),(iii)该算法依赖可以有效求解的显式方程,(iv)该算法可以在附近使用实时确定考虑其不确定性和闭环规格的在线修改工厂的控制器,(v)可以生成单个图,以图形方式突出显示增益裕度,(互补)灵敏度范围,低之间的折衷频率灵敏度和高频传感器噪声放大,以及(vi)可以实际确定最佳性的最佳控制器。

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