internal model control;
IMC;
integrating processes;
time-delay;
inverse plant model;
frequency loop shaping;
FLS;
MODIFIED SMITH PREDICTOR;
INTEGRATING PROCESSES;
UNSTABLE PROCESSES;
PHASE MARGIN;
TUNING RULES;
GAIN;
PERFORMANCE;
SCHEME;
FILTER;
D O I:
10.1504/IJAAC.2020.108273
中图分类号:
TP [自动化技术、计算机技术];
学科分类号:
0812 ;
摘要:
To achieve satisfactory set-point tracking and load disturbance rejection, two approaches for PID controller design is presented in this paper. With a PD type controller, conventional IMC techniques fail to provide a satisfactory regulatory response for integrating processes and use of an integral action may lead to a large overshoot in servo response. To address this issue, a modified IMC structure with a second compensation for integrating processes is proposed to achieve desired servo as well as regulatory responses. Next, a frequency loop-shaping based design is proposed and the guidelines for choosing the desired loop-shape are also presented. To obtain the controller parameters in frequency loop-shaping framework, the optimisation problem is solved with primal-dual interior point method. To demonstrate the effectiveness of the proposed controllers, simulation comparisons with some recently developed methods are included. Moreover, the proposed method is experimentally validated on a temperature control process.