Adaptive Linear Active Disturbance Rejection Control With Deviation Differential in DC Bus Voltage of Wind Power System
Energy shortages and environmental pollution have enabled wind power generation to develop steadily. However, during the operation of the wind power system, the dynamic performance of the DC bus voltage is often affected by disturbances from the turbine side and the grid side. In order to deal with...
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IEEE
2021-01-01
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Series: | IEEE Access |
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Online Access: | https://ieeexplore.ieee.org/document/9399131/ |
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author | Bin Zhang Long Tao Xuesong Zhou |
author_facet | Bin Zhang Long Tao Xuesong Zhou |
author_sort | Bin Zhang |
collection | DOAJ |
description | Energy shortages and environmental pollution have enabled wind power generation to develop steadily. However, during the operation of the wind power system, the dynamic performance of the DC bus voltage is often affected by disturbances from the turbine side and the grid side. In order to deal with this problem, an improve linear active disturbance rejection controller with adaptive strategy (ILADRC-FA) for grid-connected control is proposed in this paper. In this strategy, it is proposed to redefine the observation deviation of the control observer to improve the tracking accuracy of each state variable by the extended state observer (ESO), so that the controlled object can be better compensated into the integrator series type. In addition, a fuzzy adaptive strategy is introduced to optimize the dynamic response of the entire system. Then, A power hardware-in-the-loop (PHIL) experimental platform, which integrates the RT-LAB simulator and physical controller is developed in this paper to emulate the wind power system based on a permanent magnet synchronous generator. Finally, the control performance of the ILADRC-FA strategy was tested on the PHIL experimental platform to verify its correctness, effectiveness and reliability. |
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format | Article |
id | doaj.art-09573ebb5d034c75af1190c0b8f88cdc |
institution | Directory Open Access Journal |
issn | 2169-3536 |
language | English |
last_indexed | 2024-04-12T04:57:38Z |
publishDate | 2021-01-01 |
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spelling | doaj.art-09573ebb5d034c75af1190c0b8f88cdc2022-12-22T03:47:04ZengIEEEIEEE Access2169-35362021-01-019578085781810.1109/ACCESS.2021.30717529399131Adaptive Linear Active Disturbance Rejection Control With Deviation Differential in DC Bus Voltage of Wind Power SystemBin Zhang0Long Tao1https://orcid.org/0000-0002-2681-6855Xuesong Zhou2School of Environment Science and Engineering, Tianjin University, Tianjin, ChinaSchool of Electrical and Information Engineering, Tianjin University, Tianjin, ChinaSchool of Electrical and Electronic Engineering, Tianjin University of Technology, Tianjin, ChinaEnergy shortages and environmental pollution have enabled wind power generation to develop steadily. However, during the operation of the wind power system, the dynamic performance of the DC bus voltage is often affected by disturbances from the turbine side and the grid side. In order to deal with this problem, an improve linear active disturbance rejection controller with adaptive strategy (ILADRC-FA) for grid-connected control is proposed in this paper. In this strategy, it is proposed to redefine the observation deviation of the control observer to improve the tracking accuracy of each state variable by the extended state observer (ESO), so that the controlled object can be better compensated into the integrator series type. In addition, a fuzzy adaptive strategy is introduced to optimize the dynamic response of the entire system. Then, A power hardware-in-the-loop (PHIL) experimental platform, which integrates the RT-LAB simulator and physical controller is developed in this paper to emulate the wind power system based on a permanent magnet synchronous generator. Finally, the control performance of the ILADRC-FA strategy was tested on the PHIL experimental platform to verify its correctness, effectiveness and reliability.https://ieeexplore.ieee.org/document/9399131/Wind power systemdynamic performancelinear active disturbance rejection controllerfuzzy adaptive strategydifferential signalperformance analysis |
spellingShingle | Bin Zhang Long Tao Xuesong Zhou Adaptive Linear Active Disturbance Rejection Control With Deviation Differential in DC Bus Voltage of Wind Power System IEEE Access Wind power system dynamic performance linear active disturbance rejection controller fuzzy adaptive strategy differential signal performance analysis |
title | Adaptive Linear Active Disturbance Rejection Control With Deviation Differential in DC Bus Voltage of Wind Power System |
title_full | Adaptive Linear Active Disturbance Rejection Control With Deviation Differential in DC Bus Voltage of Wind Power System |
title_fullStr | Adaptive Linear Active Disturbance Rejection Control With Deviation Differential in DC Bus Voltage of Wind Power System |
title_full_unstemmed | Adaptive Linear Active Disturbance Rejection Control With Deviation Differential in DC Bus Voltage of Wind Power System |
title_short | Adaptive Linear Active Disturbance Rejection Control With Deviation Differential in DC Bus Voltage of Wind Power System |
title_sort | adaptive linear active disturbance rejection control with deviation differential in dc bus voltage of wind power system |
topic | Wind power system dynamic performance linear active disturbance rejection controller fuzzy adaptive strategy differential signal performance analysis |
url | https://ieeexplore.ieee.org/document/9399131/ |
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