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An Approach to optimal Design of Stabilizing PID Controllers for Time-delay Systems

机译:时滞系统稳定PID控制器的优化设计方法

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A novel approach to find the optimal stabilizing regions for PID control systems with time-delay is proposed. The method is based on the observation that the stabilizing PID compensators form a set of polyhedral sets in the three-dimensional parameter space. To avoid the lack of constraints problem, which prohibits the optimization of three PID controller parameters, the robustness constraint is integrated into the stable region determination algorithm. The constraint defines a set of controller parameters such that the maximum sensitivities are less than prescribed values. Compared with previous results it is considerably simpler and faster to determine such parameter regions by combining a so-called dual-locus diagram with the maximum sensitivity constrains with the integral gain Ki as the system performance measure. The approach presented works well without sweeping over parameters, and do not need complex numerical calculations to achieve the required performance. The simulations have shown the effectiveness of the method.
机译:提出了一种寻找具有时滞的PID控制系统最优稳定区域的新方法。该方法基于以下观察:稳定的PID补偿器在三维参数空间中形成了一组多面体集。为了避免缺乏约束的问题(该问题禁止对三个PID控制器参数进行优化),将鲁棒性约束集成到稳定区域确定算法中。该约束定义了一组控制器参数,以使最大灵敏度小于规定值。与以前的结果相比,通过结合具有最大灵敏度约束的所谓双轨迹图和积分增益Ki作为系统性能指标,可以轻松,快捷地确定此类参数区域。提出的方法在不涉及参数的情况下效果很好,并且不需要复杂的数值计算即可获得所需的性能。仿真表明了该方法的有效性。

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