Research Article

DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS

Volume: 28 Number: 1 April 30, 2023
TR EN

DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS

Abstract

In this study, firstly, a general-purpose test simulator circuit was developed that could test the response of the circuits used in power electronic systems on hardware under various operating conditions (hardware in the loop). In the next step, a control board to be used for Shunt Active Power Filters (SAPF) was designed. The control software for SAPF was prepared using CubeMX IDE compiler for two different harmonic extraction methods using instantaneous reactive power theory (IRPT) and synchronous rotating reference frame (SRF) methods. Finally, before connecting the prototype SAPF control board and software to the real system, it had been verified to work safely using the designed test system. With this study, both the SAPF prototype circuit was prepared and a cost-effective system that could be found in the market was designed.

Keywords

Supporting Institution

Kütahya Dumlupınar Üniversitesi Bilimsel Araştırma Projeleri Birimi

Project Number

2020-16

Thanks

This work is supported by the Scientific Research Projects Commission of Kütahya Dumlupınar University with the project number of 2020-16.

References

  1. 1. Assiene Mouodo, L. V., Mahamat ALI, A. H., Tamba, J. G., and Olivier, T. S. M. (2022). Comparison and classification of six reference currents extraction algorithms for harmonic compensation on a stochastic power network: Case of the TLC hybrid filter, Cogent Engineering, 9(1), doi:10.1080/23311916.2022.2076322.
  2. 2. Arya, S. R., and Singh, B. (2014). Power quality improvement under nonideal AC mains in distribution system, Electric Power Systems Research, 106, 86-94, doi:10.1016/j.epsr.2013.08.008.
  3. 3. Balikci, A., Hafezi, H., and Akpınar, E. (2022). Cascaded controller for single-phase shunt active power filter and STATCOM, International Journal of Renewable Energy Technology, 13(1), 28-47, doi:10.1504/IJRET.2022.120329.
  4. 4. Bhattacharya, A., Chakraborty, C., and Bhattacharya, S. (2009). Shunt compensation, IEEE Industrial Electronics Magazine, 3(3), 38–49. doi: 10.1109/MIE.2009.933881.
  5. 5. Bouscayrol, A. (2010). Hardware-In-the-Loop simulation, in Industrial Elecronics Handbooks, 2nd ed. Chicago, IL, USA: Taylor & Francis, tome 3, ch. M35, Dec. 2010.
  6. 6. Corradini, L., Stefanutti, W., and Mattavelli, P. (2008). Analysis of multisampled current control for active filters, IEEE Transactions on Industry Applications, 44(6), 1785–1794. doi: 10.1109/TIA.2008.2006327.
  7. 7. Costa-Castello, R., Grino, R., Parpal, R.C., and Fossas, E. (2009). High-performance control of a single-phase shunt active filter, IEEE Transactions on Control Systems Technology, 17(6), 1318–1329. doi:10.1109/TCST.2008.2007494.
  8. 8. Çolak, İ., Bayindir, R., Irmak, E., and Kaplan, O. (2011). A comparative study of harmonic extraction methods for single phase shunt active power filter, In 2011 International Conference on Power Engineering, Energy and Electrical Drives,1-4, doi:10.1109/PowerEng.2011.6036515.

Details

Primary Language

English

Subjects

Software Engineering, Electrical Engineering

Journal Section

Research Article

Publication Date

April 30, 2023

Submission Date

August 18, 2022

Acceptance Date

January 11, 2023

Published in Issue

Year 2023 Volume: 28 Number: 1

APA
Tekçe, F., & Vardar, K. (2023). DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, 28(1), 107-122. https://doi.org/10.17482/uumfd.1164004
AMA
1.Tekçe F, Vardar K. DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS. UUJFE. 2023;28(1):107-122. doi:10.17482/uumfd.1164004
Chicago
Tekçe, Ferzende, and Kadir Vardar. 2023. “DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 28 (1): 107-22. https://doi.org/10.17482/uumfd.1164004.
EndNote
Tekçe F, Vardar K (April 1, 2023) DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 28 1 107–122.
IEEE
[1]F. Tekçe and K. Vardar, “DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS”, UUJFE, vol. 28, no. 1, pp. 107–122, Apr. 2023, doi: 10.17482/uumfd.1164004.
ISNAD
Tekçe, Ferzende - Vardar, Kadir. “DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 28/1 (April 1, 2023): 107-122. https://doi.org/10.17482/uumfd.1164004.
JAMA
1.Tekçe F, Vardar K. DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS. UUJFE. 2023;28:107–122.
MLA
Tekçe, Ferzende, and Kadir Vardar. “DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, vol. 28, no. 1, Apr. 2023, pp. 107-22, doi:10.17482/uumfd.1164004.
Vancouver
1.Ferzende Tekçe, Kadir Vardar. DESIGN OF HARDWARE IN THE LOOP (HIL) SIMULATOR BOARD FOR POWER ELECTRONIC SYSTEMS AND ITS IMPLEMENTATION FOR ACTIVE POWER FILTERS. UUJFE. 2023 Apr. 1;28(1):107-22. doi:10.17482/uumfd.1164004

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