Direct synthesis approach to design fractional PID controller for SISO and MIMO systems based on Smith predictor structure applied for time-delay non integer-order models

被引:0
作者
Sami Laifa
Badreddine Boudjehem
Hamza Gasmi
机构
[1] Université 8 Mai 1945 Guelma,Advanced Control Laboratory (LABCAV), Department of Electronics and Telecommunications
[2] Université 8 Mai 1945 Guelma,Advanced Control Laboratory (LABCAV), Department of Electrotechnics and Automatic
来源
International Journal of Dynamics and Control | 2022年 / 10卷
关键词
Fractional order PID (FOPID) controller; Smith predictor; NIOPTD-II model; Time-domain specifications; Fractional order filter (FOF); MIMO system;
D O I
暂无
中图分类号
学科分类号
摘要
Our work on this paper aims on developing the strategies of fractional order controller (FOC) design based on use time-domain specifications (Percentage of overshoot (PO) and Settling time (ts)) to control non integer-order models with plus time delay (NIOPTD or fractional order models). Considering a fractional Smith predictor structure, a efficient and simple analytical strategy to tuning a FOC for fractional models is suggested. The design strategy is based on desired time-domain specifications (PO and ts). To achieve these requirements, many tuning analytical formulas are derived using on Bode’s ideal closed-loop transfer function. The resulting new controller can be decomposed into fractional order PID controller cascaded with a fractional order filter. The parameters of the FOPID controller are directly obtained by using the parameters of the fractional order models and the fractional-order filter parameters are easily obtained Using formulas of time-domain specifications (PO and ts). After a successful implementation of the proposed fractional controller on single-input-single-output (SISO) process, it is implemented on the complex system (multi-input multi-output (MIMO) system). Where the simulation results show that the suggested strategy of fractional Smith predictor improves the closed-loop control system compared to other controllers.
引用
收藏
页码:760 / 770
页数:10
相关论文
共 78 条
  • [1] Smith OJM(1957)Closer control of loops with dead time Chem Eng Prog 53 217-219
  • [2] Liu T(2005)New modified Smith predictor scheme for integrating and unstable processes with time delay IEE Proc Control Theor Appl 152 238-246
  • [3] Cai YZ(2007)Modified Smith predictor scheme for periodic disturbance reduction in linear delay systems J Process Control 17 799-804
  • [4] Gu DY(2012)Control of stable, integrating and unstable processes by the Modified Smith predictor J Process Control 22 338-343
  • [5] Zhang WD(2016)Enhanced modified Smith predictor for second-order non-minimum phase unstable processes Int J Syst Sci 47 966-981
  • [6] Chen YD(2009)Robust control design for long time-delay systems J Process Control 19 1640-1648
  • [7] Tung PC(1999)Robust PID tuning for Smith predictor in the presence of model uncertainty J Process Control 9 79-85
  • [8] Fuh CC(2009)Unified approach for robust dead-time compensator design J Process Control 19 38-47
  • [9] MataušekRibic MRAI(2013)Robust Smith predictor design for time-delay systems with IFAC Proc 46 102-107
  • [10] Uma S(1994) performance IEEE Trans Autom Control 39 343-345