Direct Power Control Strategy of PWM Rectifier Based on Improved Virtual Flux-Linkage Observer

In order to achieve the low cost and high performance control of three-phase PWM rectifier, a direct power control (DPC) strategy based on a new-style virtual flux-linkage observer is proposed. The model of three-phase PWM rectifier and the principle of virtual flux-linkage vector control are introd...

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Main Authors: Wenshao BU, Leilei Xu
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:Journal of Control Science and Engineering
Online Access:http://dx.doi.org/10.1155/2017/9376735
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spelling doaj-c6c8437cff2d448fb291a32b10cc94b82020-11-25T01:11:44ZengHindawi LimitedJournal of Control Science and Engineering1687-52491687-52572017-01-01201710.1155/2017/93767359376735Direct Power Control Strategy of PWM Rectifier Based on Improved Virtual Flux-Linkage ObserverWenshao BU0Leilei Xu1Electrical Engineering College, Henan University of Science and Technology, Luoyang 471023, ChinaElectrical Engineering College, Henan University of Science and Technology, Luoyang 471023, ChinaIn order to achieve the low cost and high performance control of three-phase PWM rectifier, a direct power control (DPC) strategy based on a new-style virtual flux-linkage observer is proposed. The model of three-phase PWM rectifier and the principle of virtual flux-linkage vector control are introduced firstly. Then, in order to avoid the effect of integral initial value and cumulative deviation, three first-order low-pass filters are cascaded to replace the pure integral link; an improved virtual flux-linkage observer of three-phase power grid is presented. From the observed virtual flux-linkage, the voltage and instantaneous power of three-phase power grid are online estimated. On this basis, the power grid voltage sensorless direct power control system of three-phase PWM rectifier is designed. Simulation results have shown that, both in the rectifying state and in the inverting state, the power grid side current and the DC side voltage of three-phase PWM rectifier all can be effectively controlled; the high power factor operation of three-phase PWM rectifier is realized.http://dx.doi.org/10.1155/2017/9376735
collection DOAJ
language English
format Article
sources DOAJ
author Wenshao BU
Leilei Xu
spellingShingle Wenshao BU
Leilei Xu
Direct Power Control Strategy of PWM Rectifier Based on Improved Virtual Flux-Linkage Observer
Journal of Control Science and Engineering
author_facet Wenshao BU
Leilei Xu
author_sort Wenshao BU
title Direct Power Control Strategy of PWM Rectifier Based on Improved Virtual Flux-Linkage Observer
title_short Direct Power Control Strategy of PWM Rectifier Based on Improved Virtual Flux-Linkage Observer
title_full Direct Power Control Strategy of PWM Rectifier Based on Improved Virtual Flux-Linkage Observer
title_fullStr Direct Power Control Strategy of PWM Rectifier Based on Improved Virtual Flux-Linkage Observer
title_full_unstemmed Direct Power Control Strategy of PWM Rectifier Based on Improved Virtual Flux-Linkage Observer
title_sort direct power control strategy of pwm rectifier based on improved virtual flux-linkage observer
publisher Hindawi Limited
series Journal of Control Science and Engineering
issn 1687-5249
1687-5257
publishDate 2017-01-01
description In order to achieve the low cost and high performance control of three-phase PWM rectifier, a direct power control (DPC) strategy based on a new-style virtual flux-linkage observer is proposed. The model of three-phase PWM rectifier and the principle of virtual flux-linkage vector control are introduced firstly. Then, in order to avoid the effect of integral initial value and cumulative deviation, three first-order low-pass filters are cascaded to replace the pure integral link; an improved virtual flux-linkage observer of three-phase power grid is presented. From the observed virtual flux-linkage, the voltage and instantaneous power of three-phase power grid are online estimated. On this basis, the power grid voltage sensorless direct power control system of three-phase PWM rectifier is designed. Simulation results have shown that, both in the rectifying state and in the inverting state, the power grid side current and the DC side voltage of three-phase PWM rectifier all can be effectively controlled; the high power factor operation of three-phase PWM rectifier is realized.
url http://dx.doi.org/10.1155/2017/9376735
work_keys_str_mv AT wenshaobu directpowercontrolstrategyofpwmrectifierbasedonimprovedvirtualfluxlinkageobserver
AT leileixu directpowercontrolstrategyofpwmrectifierbasedonimprovedvirtualfluxlinkageobserver
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