Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter

This paper presents a comparative study of discrete proportional integral (PI) and proportional resonant (PR) current control for single-phase uninterruptible power supply (UPS) inverters. There is an increasing requirement for current and voltage-controlled UPS inverters with very low or zero stead...

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Main Authors: Parvez, Mohammad, Elias, Mohamad Fathi Mohamad, Rahim, Nasrudin Abd, Blaabjerg, Frede, Abbott, Derek, Al-Sarawi, Said F.
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Published: Institute of Electrical and Electronics Engineers 2020
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Online Access:http://eprints.um.edu.my/25413/
https://doi.org/10.1109/ACCESS.2020.2964603
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spelling my.um.eprints.254132020-08-19T00:52:14Z http://eprints.um.edu.my/25413/ Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter Parvez, Mohammad Elias, Mohamad Fathi Mohamad Rahim, Nasrudin Abd Blaabjerg, Frede Abbott, Derek Al-Sarawi, Said F. TK Electrical engineering. Electronics Nuclear engineering This paper presents a comparative study of discrete proportional integral (PI) and proportional resonant (PR) current control for single-phase uninterruptible power supply (UPS) inverters. There is an increasing requirement for current and voltage-controlled UPS inverters with very low or zero steady-state error, improved transient response and lower total harmonic distortion (THD). The most promising type of current regulator for single-phase inverters is PR control because it can introduce an infinite gain at a selected resonance frequency such as the fundamental frequency to eliminate the steady-state error, which cannot be achieved by well-known proportional integral (PI) control. Note that PI control has limitations in terms of the steady-state magnitude and phase errors. In addition, PI control also has limited harmonic rejection capability, unlike the PR control, also can compensate for low-order harmonics. Imperfections in the current and voltage control scheme results in higher harmonic distortion of the output current and voltage. In this paper, performance of PR control parameters (Kp, Ki, and ωc) and filter parameters (Lf and Cf) are optimally tuned to obtain a very low THD current with reduced output voltage ripple and steady-state error. The analysis, design and implementation of both PI and PR current control in single-phase UPS inverter applications through simulations and experiments are also presented in this paper. The performance of both of these control schemes are analyzed in terms of steady-state response, transient response, and level of current harmonics. © 2013 IEEE. Institute of Electrical and Electronics Engineers 2020 Article PeerReviewed Parvez, Mohammad and Elias, Mohamad Fathi Mohamad and Rahim, Nasrudin Abd and Blaabjerg, Frede and Abbott, Derek and Al-Sarawi, Said F. (2020) Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter. IEEE Access, 8. pp. 45584-45595. ISSN 2169-3536 https://doi.org/10.1109/ACCESS.2020.2964603 doi:10.1109/ACCESS.2020.2964603
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Parvez, Mohammad
Elias, Mohamad Fathi Mohamad
Rahim, Nasrudin Abd
Blaabjerg, Frede
Abbott, Derek
Al-Sarawi, Said F.
Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter
description This paper presents a comparative study of discrete proportional integral (PI) and proportional resonant (PR) current control for single-phase uninterruptible power supply (UPS) inverters. There is an increasing requirement for current and voltage-controlled UPS inverters with very low or zero steady-state error, improved transient response and lower total harmonic distortion (THD). The most promising type of current regulator for single-phase inverters is PR control because it can introduce an infinite gain at a selected resonance frequency such as the fundamental frequency to eliminate the steady-state error, which cannot be achieved by well-known proportional integral (PI) control. Note that PI control has limitations in terms of the steady-state magnitude and phase errors. In addition, PI control also has limited harmonic rejection capability, unlike the PR control, also can compensate for low-order harmonics. Imperfections in the current and voltage control scheme results in higher harmonic distortion of the output current and voltage. In this paper, performance of PR control parameters (Kp, Ki, and ωc) and filter parameters (Lf and Cf) are optimally tuned to obtain a very low THD current with reduced output voltage ripple and steady-state error. The analysis, design and implementation of both PI and PR current control in single-phase UPS inverter applications through simulations and experiments are also presented in this paper. The performance of both of these control schemes are analyzed in terms of steady-state response, transient response, and level of current harmonics. © 2013 IEEE.
format Article
author Parvez, Mohammad
Elias, Mohamad Fathi Mohamad
Rahim, Nasrudin Abd
Blaabjerg, Frede
Abbott, Derek
Al-Sarawi, Said F.
author_facet Parvez, Mohammad
Elias, Mohamad Fathi Mohamad
Rahim, Nasrudin Abd
Blaabjerg, Frede
Abbott, Derek
Al-Sarawi, Said F.
author_sort Parvez, Mohammad
title Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter
title_short Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter
title_full Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter
title_fullStr Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter
title_full_unstemmed Comparative Study of Discrete PI and PR Controls for Single-Phase UPS Inverter
title_sort comparative study of discrete pi and pr controls for single-phase ups inverter
publisher Institute of Electrical and Electronics Engineers
publishDate 2020
url http://eprints.um.edu.my/25413/
https://doi.org/10.1109/ACCESS.2020.2964603
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score 13.160551