[1] |
Santosh Kumar D B, Padma Sree R. Tuning of IMC based PID controllers for integrating systems with time delay[J]. ISA Transactions, 2016, 63(4):242-255.
doi: 10.1016/j.isatra.2016.03.020
|
[2] |
Zhang W D. Quantitative process control theory[M]. Boca Raton: CRC Press Inc, 2011:105-107.
|
[3] |
Ali A, Majhi S. PID controller tuning for integrating processes[J]. ISA Transactions, 2010, 49(1):70-78.
doi: 10.1016/j.isatra.2009.09.001
pmid: 19782358
|
[4] |
Jin Q B, Liu Q. Analytical IMC-PID design in terms of performance/robustness tradeoff for integrating processes: From 2-Dof to 1-Dof[J]. Journal of Process Control, 2014, 24(3):22-32.
doi: 10.1016/j.jprocont.2013.12.011
|
[5] |
温晓花. 基于时滞系统IMC-PID的设计与整定[J]. 机械, 2019, 46(2):33-36.
|
|
Wen Xiaohua. Design and tuning of IMC-PID based on time delay system[J]. Machine, 2019, 46(2):33-36.
|
[6] |
杜琛鑫. 时滞系统的PID稳定域及参数整定研究[D]. 大连: 大连海事大学, 2019:37-44.
|
|
Du Chenxin. Research on PID stabilization and parameters tuning of time delay systems[D]. Dalian: Dalian Maritime University, 2019:37-44.
|
[7] |
任金霞, 蒋梦倩, 黄艺培. 一种复杂系统的分数阶内模PID控制器设计[J]. 江西理工大学报, 2020, 41(1):71- 76.
|
|
Ren Jinxia, Jiang Mengqian, Huang Yipei. Design of a fractional internal model PID controller for a complex system[J]. Journal of Jiangxi University of Science and Technology, 2020, 41(1):71-76.
|
[8] |
朱景秀, 张伟, 王亚刚. 一类不稳定时滞对象的两自由度控制器设计[J]. 电子科技, 2021, 34(3):13-18.
|
|
Zhu Jingxiu, Zhang Wei, Wang Yagang. Two degrees of freedom control structure for one classes of unstable process with time-delay[J]. Electronic Science and Technology, 2021, 34(3):13-18.
|
[9] |
赵仕艳, 谢子殿, 丁康康, 等. 粒子群优化BP-PID的矿井提升机调速系统[J]. 电子科技, 2021, 34(1):43-49.
|
|
Zhao Shiyan, Xie Zidian, Ding Kangkang, et al. Particle swarm optimization BP-PID of rotor variable frequency speed in mine hoisting system[J]. Electronic Science and Technology, 2021, 34(1):43-49.
|
[10] |
Anil C, Padma Sree R. PID control of integrating systems using multiple dominant pole-placement method[J]. Asia-Pacific Journal of Chemical Engineering, 2015, 10(5):734-742.
doi: 10.1002/apj.v10.5
|
[11] |
Viteckova M, Vitecek A. Use of multiple dominant pole method for controller tuning[C]. New York: Proceedings of the Thirteenth International Carpathian Control Conference, 2012:27-34.
|
[12] |
Ajmeri M, Ali A. Simple tuning rules for integrating processes with large time delay[J]. Asian Journal of Control, 2015, 17(5):2033-2040.
doi: 10.1002/asjc.1119
|
[13] |
Anil C, Padma Sree R. Tuning of PID controllers for integrating systems using direct synthesis method[J]. ISA Transactions, 2015, 57(7):211-219.
doi: 10.1016/j.isatra.2015.03.002
|
[14] |
杨文刚. 适用于多种积分过程的鲁棒PID控制器设计方案[J]. 控制工程, 2016, 23(4):538-543.
|
|
Yang Wengang. A robust PID controller design method for multiple kinds of integrating systems[J]. Control Engineering of China, 2016, 23(4):538-543.
|
[15] |
Vilanova R, Arrieta O, Ponsa P. Robust PI/PID controllers for load disturbance based on direct synthesis[J]. ISA Transactions, 2018, 81(3):177-196.
doi: 10.1016/j.isatra.2018.07.040
|
[16] |
Rao A S, Rao V S R, Chidambaram M. Direct synthesis based controller design for integrating processes with time delay[J]. Journal of the Franklin Institute, 2009, 346(1):38-56.
doi: 10.1016/j.jfranklin.2008.06.004
|
[17] |
Ghousiya Begum K, Seshagiri Rao A, Radhakrishnan T K. Maximum sensitivity based analytical tuning rules for PID controllers for unstable dead time processes[J]. Chemical Engineering Research and Design, 2016, 10(9):593-606.
|
[18] |
Astrom K J, Hagglund T. PID controllers[M]. Amsterdam: ISA Publishers, 1995:66-68.
|