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Improved fractional filter IMC-PID controller design for enhanced performance of integrating plus time delay processes

机译:改进的分数滤波器IMC-PID控制器设计,用于增强积分加上时间延迟过程的性能

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摘要

In this paper, an improved fractional filter IMC-PID controller was proposed to enhance the performance of integrating processes after identifying the optimum higher order fractional IMC filter structure. The identification involves a systematic procedure based on the minimisation of integral absolute error (IAE). The present design also considers different approximations for time delay. The tuning parameters are obtained based on the prefixed robustness (maximum sensitivity, M_s). The present method is compared with recent methods in the literature and its superiority is demonstrated with performance measures IAE and total variation (TV). Enhanced output performance is obtained for nominal process conditions; for process parameter variations and for noise in the measurement. Robustness analysis is performed using complementary sensitivity function and parametric uncertainty bounds. Also, the fragility analysis is carried out to check the sensitivity of closed loop system for variation in controller parameters.
机译:在本文中,提出了一种改进的分数滤波器IMC-PID控制器,以增强在识别最佳高阶分数IMC滤波器结构之后积分过程的性能。该识别涉及基于积分绝对误差(IAE)的最小化的系统过程。目前的设计还考虑了时间延迟的不同近似。基于前缀的鲁棒性(最大灵敏度,M_S)获得调谐参数。将本方法与最近的文献中的方法进行比较,其优越性通过性能测量IAE和总变化(电视)。获得标称工艺条件的增强的输出性能;用于过程参数变化和测量中的噪声。使用互补灵敏度函数和参数不确定性界限进行鲁棒性分析。而且,进行脆性分析以检查闭环系统的灵敏度是否有控制器参数的变化。

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