• 대한전기학회
Mobile QR Code QR CODE : The Transactions of the Korean Institute of Electrical Engineers
  • COPE
  • kcse
  • 한국과학기술단체총연합회
  • 한국학술지인용색인
  • Scopus
  • crossref
  • orcid

References

1 
D. Bullock, B. Johnson, R. B. Wells, M. Kyte and Z. Li, “Hardware-in-the-loop simulation,” Transportation Research Part C: Emerging Technologies, vol. 12, no. 1, pp. 73–89, Feb. 2004. DOI:10.1016/j.trc.2002.10.002DOI
2 
F. Mihalič, M. Truntič and A. Hren, “Hardware-in-the-Loop Simulations: A Historical Overview of Engineering Challenges,” Electronics, vol. 11, no. 15, Art. no. 15, Jan. 2022. DOI:10.3390/electronics11152462DOI
3 
A. R. Plummer, “Model-in-the-Loop Testing,” Proceedings of the Institution of Mechanical Engineers, Part I, vol. 220, no. 3, pp. 183–199, May 2006. DOI:10.1243/09596518JSCE207DOI
4 
W. Werth, L. Faller, H. Liechtenecker and C. Ungermanns, “Low Cost Rapid Control Prototyping – a useful method in Control Engineering Education,” in 2020 43rd International Convention on Information, Communication and Electronic Technology (MIPRO), pp. 711–715, Sep. 2020. DOI:10.23919/MIPRO48935.2020.9245122DOI
5 
Y. Qi, H. Tian, Y. Lou and L. He, “Design of Hardware-in- the-loop Real Time Simulation System for Tidal Turbine Control System Based on RT - LAB,” in 2022 4th International Conference on Intelligent Control, Measurement and Signal Processing (ICMSP), pp 603–606, Jul. 2022. DOI:10.1109/ICMSP55950.2022.9858943DOI
6 
S. Noh and C. Kim, “Controller Design and Performance Verification Technique using Low-cost HILS(Hardware-In the Loop Simulation) System,” Journal of the Institute of Electrical Engineers P, vol. 72P, no. 3, pp. 133–138, Sep. 2023. DOI:10.5370/KIEEP.2023.72.3.133DOI
7 
Y. Kim, J. Hyun, Y. Guo, K. Cho and C. Kim, “Development of a low-cost HILS test bed for MagLev logistics transport system consider ing the delay latency of communication,” Proceedings of the Korean Institute of Electrical Engineers Conference, pp. 2716–2717, Jul. 2024.URL
8 
Y. Kim, J. Hyun, Y. Guo and C. Kim, “Develolpment of a low-cost HILS (Hardware-In the Loop Simulation) test bed for MagLev conveyor system with time delay based on wireless communication,” Proceedings of the Korean Institute of Electrical Engineers Conference, pp. 25–26, Apr. 2024.URL
9 
L. Zhou and J. Wu, “Magnetic Levitation Technology for Precision Motion Systems: A Review and Future Perspectives,” International Journal of Automation Technology, vol. 16, no. 4, pp. 386–402, Jul. 2022. DOIO:10.20965/ijat.2022.p0386DOI
10 
H. M. M. Adil, S. Ahmed and I. Ahmad, “Control of MagLev System Using Supertwisting and Integral Backstepping Sliding Mode Algorit hm,” IEEE Access, vol. 8, pp. 51352–51362, 2020. DOI:10.1109/ACCESS.2020.2980687DOI
11 
S. Li, J.-W. Park, J.-W. Lim and C. Ahn, “Design and Control of a Passive Magnetic Levitation Carrier System,” International Journal of Precision Engineering and Manufacturing, vol. 16, pp. 693–700, Apr. 2015. DOI:10.1007/s12541-015-0092-3DOI
12 
Rosinová and M. Hypiusová, “Comparison of Nonlinear and Linear Controllers for Magnetic Levitation System,” Applied Sciences, vol. 11, no. 17, Art. no. 17, Jan. 2021. DOI:10.3390/app11177795DOI
13 
W. Xia, Z. Long and F. Dou, “Disturbance Rejection Control Using a Novel Velocity Fusion Estimation Method for Levitation Control Systems,” IEEE Access, vol. 8, pp. 173092–173102, Jan. 2020. DOI:10.1109/ACCESS.2020.3024665DOI
14 
J. Ahn, I. Yun, H. Kim, D. Jung, J. Lee and C. Kim, “Backstepping Controller Design of Maglev System for Air-gap Position Control,” Journal of the Korean Society for Railway, vol. 25, no. 3, pp. 192-202, 2022. DOI:10.7782/JKSR.2022.25.3.192DOI
15 
C. Kim, “Optimal Control for a Superconducting Hybrid MagLev Transport System with Multirate Multisensors in a Smart Factory,” Sensors, vol. 24, no. 2, Art. no. 2, Jan. 2024. DOI:10.3390/s24020671DOI
16 
H. Liu, X. Zhang and W. Chang, “PID Control to Maglev Train System,” in 2009 International Conference on Industrial and Information Systems, pp. 341–343, Apr. 2009. DOI:10.1109/IIS.2009.24DOI