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Design of an optimized PID controller for non-minimum phase system with delay

机译:具有延迟的非最小相位系统优化PID控制器的设计

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In this paper an optimized proportional plus integral plus derivative (PID) controller is designed to control the non-minimum phase systems (NMP) with delay. The problem associated with the NMP system is the undershoot behaviour of the system caused by zeros of the right half plane and it becomes trivial as delay increases. To improve the system performance the parameters of the PID controller are optimized using grey wolf optimizer (GWO). The GWO algorithm seeks to obtain the global optimal values of the PID controller in the region delineate by the conventional tuning criterion like Ziegler-Nichols (ZN) rule. The parameters are optimized on the basis of minimizing the integral absolute error (IAE) of the system. Simulation results prove that the proposed method advances the transient performance like settling time, rise time, peak time and overshoot of the system.
机译:本文在优化的比例加积分加衍生物(PID)控制器旨在控制具有延迟的非最小相位系统(NMP)。与NMP系统相关的问题是由右半平面的零引起的系统的下冲行为,并且随着延迟增加而变得微不足道。为了提高系统性能,使用灰狼优化器(GWO)优化PID控制器的参数。 GWO算法旨在通过像Ziegler-Nichols(Zn)规则等传统调谐标准,获取区域描绘中的PID控制器的全局最佳值。参数在最小化系统的积分绝对误差(IAE)的基础上进行了优化。仿真结果证明,该方法推进了系统的稳定时间,上升时间,高峰时间和系统过冲等瞬态性能。

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