Decentralized Control Method of ISOP Converter for Input Voltage Sharing and Output Current Sharing in Current Control Loop

Input-Series-Output-Parallel (ISOP) converters, a kind of modular converter, are used in high-input voltage and high-output current applications. In ISOP converters, Input Voltage Sharing (IVS) and Output Current Sharing (OCS) should be implemented for stable operation. In order to solve this proble...

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Main Authors: Sung-Hun Kim, Bum-Jun Kim, Jung-Min Park, Chung-Yuen Won
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/5/1114
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spelling doaj-79941d7e2e0d4a70bcf6ee867bf3303d2020-11-25T02:38:58ZengMDPI AGEnergies1996-10732020-03-01135111410.3390/en13051114en13051114Decentralized Control Method of ISOP Converter for Input Voltage Sharing and Output Current Sharing in Current Control LoopSung-Hun Kim0Bum-Jun Kim1Jung-Min Park2Chung-Yuen Won3Department of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaDepartment of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaDepartment of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaDepartment of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, KoreaInput-Series-Output-Parallel (ISOP) converters, a kind of modular converter, are used in high-input voltage and high-output current applications. In ISOP converters, Input Voltage Sharing (IVS) and Output Current Sharing (OCS) should be implemented for stable operation. In order to solve this problem, this paper proposes a decentralized control method. In the proposed control, output current reference is changed according to the decentralized control characteristic in individual current control loops. In this way, the proposed control method is able to implement IVS and OCS without communication. Also, this method can be easily used in current control loops and has high reliability compared to conventional control methods that require communication. In this paper, the operation principle is described to elucidate the proposed control and a small signal model of an ISOP converter is also implemented. Based on the small signal model, IVS stability analysis is performed using pole-zero maps with varying coefficients and control gains. In addition, the current control loop is designed in a stable region. In order to demonstrate the proposed control method, a prototype ISOP converter is configured using full-bridge converters. The performance of IVS and OCS in an ISOP converter is verified by experimental result.https://www.mdpi.com/1996-1073/13/5/1114input-series-output-parallel converterinput voltage sharingoutput current sharingdecentralized control
collection DOAJ
language English
format Article
sources DOAJ
author Sung-Hun Kim
Bum-Jun Kim
Jung-Min Park
Chung-Yuen Won
spellingShingle Sung-Hun Kim
Bum-Jun Kim
Jung-Min Park
Chung-Yuen Won
Decentralized Control Method of ISOP Converter for Input Voltage Sharing and Output Current Sharing in Current Control Loop
Energies
input-series-output-parallel converter
input voltage sharing
output current sharing
decentralized control
author_facet Sung-Hun Kim
Bum-Jun Kim
Jung-Min Park
Chung-Yuen Won
author_sort Sung-Hun Kim
title Decentralized Control Method of ISOP Converter for Input Voltage Sharing and Output Current Sharing in Current Control Loop
title_short Decentralized Control Method of ISOP Converter for Input Voltage Sharing and Output Current Sharing in Current Control Loop
title_full Decentralized Control Method of ISOP Converter for Input Voltage Sharing and Output Current Sharing in Current Control Loop
title_fullStr Decentralized Control Method of ISOP Converter for Input Voltage Sharing and Output Current Sharing in Current Control Loop
title_full_unstemmed Decentralized Control Method of ISOP Converter for Input Voltage Sharing and Output Current Sharing in Current Control Loop
title_sort decentralized control method of isop converter for input voltage sharing and output current sharing in current control loop
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-03-01
description Input-Series-Output-Parallel (ISOP) converters, a kind of modular converter, are used in high-input voltage and high-output current applications. In ISOP converters, Input Voltage Sharing (IVS) and Output Current Sharing (OCS) should be implemented for stable operation. In order to solve this problem, this paper proposes a decentralized control method. In the proposed control, output current reference is changed according to the decentralized control characteristic in individual current control loops. In this way, the proposed control method is able to implement IVS and OCS without communication. Also, this method can be easily used in current control loops and has high reliability compared to conventional control methods that require communication. In this paper, the operation principle is described to elucidate the proposed control and a small signal model of an ISOP converter is also implemented. Based on the small signal model, IVS stability analysis is performed using pole-zero maps with varying coefficients and control gains. In addition, the current control loop is designed in a stable region. In order to demonstrate the proposed control method, a prototype ISOP converter is configured using full-bridge converters. The performance of IVS and OCS in an ISOP converter is verified by experimental result.
topic input-series-output-parallel converter
input voltage sharing
output current sharing
decentralized control
url https://www.mdpi.com/1996-1073/13/5/1114
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