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Design of balanced proportional-integral-derivative controllers based on bilevel optimisation

机译:基于双层优化的平衡比例-积分-微分控制器设计

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摘要

A bilevel optimisation framework is proposed to find the proportional??integral??derivative (PID) controller with balanced performance in terms of transient response, actuator preservation and robustness. In the lower level problem, the transient performance is optimised so that the balanced controller can be designed with minimal controller output variation in the upper level problem, where the requirement on transient performance is relaxed to a pre-specified extent. The robustness of the system is guaranteed by constraints on the maximum sensitivity in both problems. The trade-off between transient performance and actuator preservation is controlled uniformly for diverse process dynamics by a single parameter, which characterises the uniformness of relaxation in transient performance. By choosing different values of this parameter, tuning rules are provided for first order plus time delay (FOPTD) processes for set point following and load disturbance rejection, respectively. The efficiency of these tuning rules is demonstrated by examples covering the whole plant family set.
机译:提出了一种双层优化框架,以找到在瞬态响应,执行器保存和鲁棒性方面具有均衡性能的比例积分积分微分(PID)控制器。在较低级别的问题中,优化了暂态性能,以便可以在较高级别的问题中设计出最小的控制器输出变化的平衡控制器,从而将暂态性能的要求放宽到了预定的程度。这两个问题中对最大灵敏度的限制都保证了系统的鲁棒性。瞬态性能和执行器保存之间的权衡是通过单个参数统一控制的,以实现各种过程动力学,该参数表征了瞬态性能松弛的均匀性。通过选择该参数的不同值,分别为一阶加时间延迟(FOPTD)过程提供了设置规则,这些规则分别用于设定点跟随和负载扰动抑制。这些调整规则的效率通过涵盖整个植物系列的示例得以证明。

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