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Handling packet dropouts and random delays for unstable delayed processes in NCS by optimal tuning of PI~(lambda)D~(mu) controllers with evolutionary algorithms

机译:通过进化算法对PI〜(λ)D〜(mu)控制器进行优化调整,处理NCS中不稳定的延迟过程的数据包丢失和随机延迟

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摘要

The issues of stochastically varying network delays and packet dropouts in Networked Control System (NCS) applications have been simultaneously addressed by time domain optimal tuning of fractional order (FO) PID controllers. Different variants of evolutionary algorithms are used for the tuning process and their performances are compared. Also the effectiveness of the fractional order PI~(lambda)D~(mu) controllers over their integer order counterparts is looked into. Two standard test bench plants with time delay and unstable poles which are encountered in process control applications are tuned with the proposed method to establish the validity of the tuning methodology. The proposed tuning methodology is independent of the specific choice of plant and is also applicable for less complicated systems. Thus it is useful in a wide variety of scenarios. The paper also shows the superiority of FOPID controllers over their conventional PID counterparts for NCS applications.
机译:网络控制系统(NCS)应用程序中随机变化的网络延迟和数据包丢失的问题已通过分数阶(FO)PID控制器的时域最佳调整同时解决。进化算法的不同变体用于调整过程,并比较了它们的性能。还研究了分数阶PI_(λ)D_μ控制器相对于其整数阶对应物的有效性。利用所提出的方法对两个具有时间延迟和极点不稳定的标准试验台工厂进行调谐,以建立调谐方法的有效性。所提出的调整方法独立于工厂的特定选择,也适用于不太复杂的系统。因此,它在各种各样的场景中很有用。本文还显示了FOPID控制器在NCS应用中优于传统PID控制器的优势。

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