Study on Topology and Control Strategy of High-Precision and Wide-Range Hybrid Converter for Photovoltaic Cell Simulator

Aiming at the function and technical requirements of high-power photovoltaic cell simulation, high-performance programmable logic power supply and dc motor simulation, a high frequency isolation hybrid topology and control strategy based on current-source/voltage-source converter was studied and pro...

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Main Authors: Jianfei Zhao, Minqi Hua, Tingzhang Liu, Tao Yu
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/12/1/39
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author Jianfei Zhao
Minqi Hua
Tingzhang Liu
Tao Yu
author_facet Jianfei Zhao
Minqi Hua
Tingzhang Liu
Tao Yu
author_sort Jianfei Zhao
collection DOAJ
description Aiming at the function and technical requirements of high-power photovoltaic cell simulation, high-performance programmable logic power supply and dc motor simulation, a high frequency isolation hybrid topology and control strategy based on current-source/voltage-source converter was studied and proposed. Firstly, according to the performance requirements of photovoltaic cell analog power supply, the control strategy requirements of the high-precision wide-range hybrid topology were proposed. Secondly, the working principle of the new hybrid topology was analyzed. At the same time, the equivalent model of the new hybrid topology was simplified and established, and the overall control strategy of the hybrid topology based on current compensation and sliding mode variable structure was proposed. Finally, simulation and experimental research on the hybrid topology was carried out, and the experimental test of photovoltaic cell simulation was completed. The simulation and experimental results show that the hybrid topology and control strategy proposed in this paper has the characteristics of wide-range output regulation, fast dynamic response, high efficiency and high power factor, and can be used for high performance photovoltaic cell simulation, programmable logic power supply and DC motor simulation.
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spelling doaj.art-f33183eccfff42b9adee810b16e911a92022-12-22T03:59:12ZengMDPI AGEnergies1996-10732018-12-011213910.3390/en12010039en12010039Study on Topology and Control Strategy of High-Precision and Wide-Range Hybrid Converter for Photovoltaic Cell SimulatorJianfei Zhao0Minqi Hua1Tingzhang Liu2Tao Yu3School of Mechatronic Engineering and Automation, Shanghai University, Baoshan District, Shanghai 200444, ChinaSchool of Mechatronic Engineering and Automation, Shanghai University, Baoshan District, Shanghai 200444, ChinaSchool of Mechatronic Engineering and Automation, Shanghai University, Baoshan District, Shanghai 200444, ChinaSchool of Mechatronic Engineering and Automation, Shanghai University, Baoshan District, Shanghai 200444, ChinaAiming at the function and technical requirements of high-power photovoltaic cell simulation, high-performance programmable logic power supply and dc motor simulation, a high frequency isolation hybrid topology and control strategy based on current-source/voltage-source converter was studied and proposed. Firstly, according to the performance requirements of photovoltaic cell analog power supply, the control strategy requirements of the high-precision wide-range hybrid topology were proposed. Secondly, the working principle of the new hybrid topology was analyzed. At the same time, the equivalent model of the new hybrid topology was simplified and established, and the overall control strategy of the hybrid topology based on current compensation and sliding mode variable structure was proposed. Finally, simulation and experimental research on the hybrid topology was carried out, and the experimental test of photovoltaic cell simulation was completed. The simulation and experimental results show that the hybrid topology and control strategy proposed in this paper has the characteristics of wide-range output regulation, fast dynamic response, high efficiency and high power factor, and can be used for high performance photovoltaic cell simulation, programmable logic power supply and DC motor simulation.http://www.mdpi.com/1996-1073/12/1/39current source convertervoltage source converterhybrid converter topologysliding mode controlspace vector control
spellingShingle Jianfei Zhao
Minqi Hua
Tingzhang Liu
Tao Yu
Study on Topology and Control Strategy of High-Precision and Wide-Range Hybrid Converter for Photovoltaic Cell Simulator
Energies
current source converter
voltage source converter
hybrid converter topology
sliding mode control
space vector control
title Study on Topology and Control Strategy of High-Precision and Wide-Range Hybrid Converter for Photovoltaic Cell Simulator
title_full Study on Topology and Control Strategy of High-Precision and Wide-Range Hybrid Converter for Photovoltaic Cell Simulator
title_fullStr Study on Topology and Control Strategy of High-Precision and Wide-Range Hybrid Converter for Photovoltaic Cell Simulator
title_full_unstemmed Study on Topology and Control Strategy of High-Precision and Wide-Range Hybrid Converter for Photovoltaic Cell Simulator
title_short Study on Topology and Control Strategy of High-Precision and Wide-Range Hybrid Converter for Photovoltaic Cell Simulator
title_sort study on topology and control strategy of high precision and wide range hybrid converter for photovoltaic cell simulator
topic current source converter
voltage source converter
hybrid converter topology
sliding mode control
space vector control
url http://www.mdpi.com/1996-1073/12/1/39
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AT minqihua studyontopologyandcontrolstrategyofhighprecisionandwiderangehybridconverterforphotovoltaiccellsimulator
AT tingzhangliu studyontopologyandcontrolstrategyofhighprecisionandwiderangehybridconverterforphotovoltaiccellsimulator
AT taoyu studyontopologyandcontrolstrategyofhighprecisionandwiderangehybridconverterforphotovoltaiccellsimulator