Strategic Pole Assignment Based on Gain Ratio Heuristic for Vibration Control of Magnetic Levitation System

被引:0
作者
Shradha Kishore
机构
[1] BIT Mesra,
来源
Journal of Vibration Engineering & Technologies | 2024年 / 12卷
关键词
Pole assignment; Gain ratio; Magnetic levitation system; Diophantine equation; Robustness;
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
页码:6685 / 6702
页数:17
相关论文
共 100 条
[11]  
Bilal E(2019)Levitation of conductive and magnetically anisotropic ball IEEE Trans Magn 48 831-3067
[12]  
Delibaş A(2001)Modeling and nonlinear control of magnetic levitation systems IEEE Trans Industr Electron 46 22-989
[13]  
Huang HP(2003)A simple technique for identifying a linearized model for a didactic magnetic levitation system IEEE Trans Educ 7 151-716
[14]  
Chen CC(2008)Magnetic levitation system in control engineering education Autom Control Robot 6 3059-1194
[15]  
Abdelaziz TH(2018)Decentralized PID control design for magnetic levitation systems using extremum seeking IEEE Access 5 977-502
[16]  
Olmez Y(2018)Design and implementation of digital fractional order PID controller using optimal pole-zero approximation method for magnetic levitation system IEEE/CAA J Automatica Sinica 8 707-388
[17]  
Koca GO(2020)Modeling, analysis and experimental evaluation of boundary threshold limits for Maglev system Int J Dyn Control 19 1186-384
[18]  
Akpolat ZH(2011)A transfer-function approach to dual-rate controller design for unstable and non-minimum-phase plants IEEE Trans Control Syst Technol 335 471-66
[19]  
Singh KV(1998)Synthesis of controllers for arbitrary pole placement in discrete plants including unstable zeros with extensions to adaptive control J Franklin Inst 12 371-418
[20]  
Ouyang H(2006)Analysis and design of robust controllers using the interval diophantine equation Reliable Comput 107 370-352