Maximum power tracking strategy of a wind energy conversion system based on resonant with active disturbance rejection control

Author:

Xiong Lei,Shi Hongjun,Zhu Qixin

Abstract

Purpose This study aims to construct a novel maximum power tracking control system for the direct drive permanent magnet synchronous generator (PMSG) of the wind energy conversion system (WECS) to solve the following problems: how to effectively eliminate the system’s model parameter disturbances and speed up the dynamic performance of the system; and how to eliminate harmonics in WECS under different wind speeds. Design/methodology/approach To obtain the maximum output power of PMSG at WECS under different wind speeds, the following issues should be considered: (1) how to effectively eliminate the system’s model parameter disturbances and speed up the dynamic performance of the system; and (2) how to suppress system harmonics. For Problem 1, adding dq compensation factors to active disturbance rejection control (ADRC) for the current loop realizes the dq axis decoupling control, which speeds up the dynamic performance of the system. For Problem 2, the resonant controller is introduced into the ADRC for the current loop to suppress harmonic current in WECS under different wind speeds. Findings The simulation results demonstrate that the proposed control method is simpler and more reliable than conventional controllers for maximum power tracking. Originality/value Compared with traditional controllers, the proposed controller can speed up the dynamic performance of the system and suppress the current harmonic effectively, thus better achieving maximum power tracking.

Publisher

Emerald

Reference26 articles.

1. Intelligent maximum power tracking control of a PMSG wind energy conversion system;Asian Journal of Control,2019

2. A novel methodology for optimal design of fractional slot with concentrated windings;IEEE Transactions on Energy Conversion,2016

3. Active disturbance rejection control of LCL-filtered grid-connected inverter using Padé approximation;IEEE Transactions on Industry Applications,2018

4. Passive filter aided by shunt compensators based on the conservative power theory;IEEE Transactions on Industry Applications,2016

5. On optimizing the aerodynamic load acting on the turbine shaft of PMSG-based direct-drive wind energy conversion system;IEEE Transactions on Industrial Electronics,2009

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