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Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters
IEEE Transactions on Power Delivery, Pages: 1 - 9
Swansea University Author: Mohammad Monfared
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DOI (Published version): 10.1109/tpwrd.2023.3262662
Abstract
This paper suggests an adaptive predictive deadbeat current control method for single-phase multi-tuned shunt hybrid active power filters (HAPFs) to improve the power quality of single-phase and three-phase four-wire utility grids. The HAPF structure eliminates the resonance between the passive powe...
Published in: | IEEE Transactions on Power Delivery |
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ISSN: | 0885-8977 1937-4208 |
Published: |
Institute of Electrical and Electronics Engineers (IEEE)
2024
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URI: | https://cronfa.swan.ac.uk/Record/cronfa63136 |
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v2 63136 2023-04-13 Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters adab4560ff08c8e5181ff3f12a4c36fb 0000-0002-8987-0883 Mohammad Monfared Mohammad Monfared true false 2023-04-13 EEEG This paper suggests an adaptive predictive deadbeat current control method for single-phase multi-tuned shunt hybrid active power filters (HAPFs) to improve the power quality of single-phase and three-phase four-wire utility grids. The HAPF structure eliminates the resonance between the passive power filter and the grid impedance. Furthermore, it can be integrated into passive filters to enhance their filtering performance. In this paper, a digital algorithm is proposed for managing the performance of each converter leg accurately. To do so, an exact model of the high-order system is developed, and the transfer function of the plant is calculated in continuous and discrete time domains. Then, a predictive deadbeat technique for HAPF current control is presented, which benefits from high accuracy, fast dynamics, and low sensitivity to system parameter mismatches. Extensive simulation and experimental tests are conducted and the results match well to confirm the success and appropriate performance of the overall system. Also, performance comparison with conventional solutions demonstrates the superiority of the suggested filtering technique. Journal Article IEEE Transactions on Power Delivery 1 9 Institute of Electrical and Electronics Engineers (IEEE) 0885-8977 1937-4208 24 1 2024 2024-01-24 10.1109/tpwrd.2023.3262662 http://dx.doi.org/10.1109/tpwrd.2023.3262662 COLLEGE NANME Electronic and Electrical Engineering COLLEGE CODE EEEG Swansea University 2024-04-24T15:40:21.5712784 2023-04-13T09:00:54.1361054 Faculty of Science and Engineering School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering Mohammad-Sadegh Karbasforooshan 0000-0001-7039-3186 1 Mohammad Monfared 0000-0002-8987-0883 2 63136__27031__767e8485ca774a31a63ea4d9427d878d.pdf 63136.pdf 2023-04-13T12:09:50.9999447 Output 971232 application/pdf Accepted Manuscript true true eng |
title |
Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters |
spellingShingle |
Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters Mohammad Monfared |
title_short |
Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters |
title_full |
Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters |
title_fullStr |
Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters |
title_full_unstemmed |
Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters |
title_sort |
Adaptive Predictive Deadbeat Current Control of Single-Phase Multi-tuned Shunt Hybrid Active Power Filters |
author_id_str_mv |
adab4560ff08c8e5181ff3f12a4c36fb |
author_id_fullname_str_mv |
adab4560ff08c8e5181ff3f12a4c36fb_***_Mohammad Monfared |
author |
Mohammad Monfared |
author2 |
Mohammad-Sadegh Karbasforooshan Mohammad Monfared |
format |
Journal article |
container_title |
IEEE Transactions on Power Delivery |
container_start_page |
1 |
publishDate |
2024 |
institution |
Swansea University |
issn |
0885-8977 1937-4208 |
doi_str_mv |
10.1109/tpwrd.2023.3262662 |
publisher |
Institute of Electrical and Electronics Engineers (IEEE) |
college_str |
Faculty of Science and Engineering |
hierarchytype |
|
hierarchy_top_id |
facultyofscienceandengineering |
hierarchy_top_title |
Faculty of Science and Engineering |
hierarchy_parent_id |
facultyofscienceandengineering |
hierarchy_parent_title |
Faculty of Science and Engineering |
department_str |
School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering |
url |
http://dx.doi.org/10.1109/tpwrd.2023.3262662 |
document_store_str |
1 |
active_str |
0 |
description |
This paper suggests an adaptive predictive deadbeat current control method for single-phase multi-tuned shunt hybrid active power filters (HAPFs) to improve the power quality of single-phase and three-phase four-wire utility grids. The HAPF structure eliminates the resonance between the passive power filter and the grid impedance. Furthermore, it can be integrated into passive filters to enhance their filtering performance. In this paper, a digital algorithm is proposed for managing the performance of each converter leg accurately. To do so, an exact model of the high-order system is developed, and the transfer function of the plant is calculated in continuous and discrete time domains. Then, a predictive deadbeat technique for HAPF current control is presented, which benefits from high accuracy, fast dynamics, and low sensitivity to system parameter mismatches. Extensive simulation and experimental tests are conducted and the results match well to confirm the success and appropriate performance of the overall system. Also, performance comparison with conventional solutions demonstrates the superiority of the suggested filtering technique. |
published_date |
2024-01-24T15:40:20Z |
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1797227409142972416 |
score |
11.035655 |