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Research on Improved Auto-Tuning of a PID Controller Based on Phase Angle Margin

机译:基于相位角裕度的PID控制器改进自动调谐的研究

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摘要

In order to realize fast and efficient tuning of the proportional-integral-derivative (PID) controller parameters in thermal power plants, this paper thoroughly analyzes the problems existing in the relay characteristic method based on the phase angle margin auto-tuning method (PM method), and proposes an improved PM auto-tuning method for the most common first order plus dead time (FOPDT) model in practical engineering applications. The improved algorithm proposes the design of the target phase angle margin and the method of plant identification. Then, the optimization algorithm is used to calculate the correction coefficient of the setting formula to obtain the PID controller parameters that minimize the integrated time absolute error (ITAE) index of the control system. Finally, through the auto-tuning experiment on the generalized control model of the main steam temperature system in thermal power plants, it is verified that the improved algorithm is superior to the traditional PM method and Ziegler−Nichols method (Z-N method), and can obtain a fast and stable control performance.
机译:为了实现热电厂中比例积分(PID)控制器参数的快速有效调整,本文彻底分析了基于相位角裕度自调整方法的继电器特性方法存在的问题(PM方法),并提出了一种改进的PM自动调谐方法,用于实际工程应用中最常见的第一阶加上死区时间(FOPDT)模型。改进的算法提出了目标相位角裕度的设计和植物识别方法。然后,优化算法用于计算设置公式的校正系数,以获得PID控制器参数,以最小化控制系统的综合时间绝对误差(ITAE)索引。最后,通过在热电厂主蒸汽温度系统的广义控制模型上进行自动调整试验,验证了改进的算法优于传统的PM方法和Ziegler-Nichols方法(Zn方法),可以获得快速稳定的控制性能。

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