A Nonlinear Three-Phase Phase-Locked Loop Based on Linear Active Disturbance Rejection Controller

Three-phase phase-locked loops (PLLs) are the most widely used synchronization components in power systems. For common PLL algorithms, there is a tradeoff between the filtering capability and dynamic response. In this paper, a nonlinear PLL (NLADRC-PLL) based on a linear active disturbance rejection...

Full description

Bibliographic Details
Main Authors: Guangyu Sun, Yongli Li, Wei Jin, Lizhi Bu
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8064620/
id doaj-6f0547cb596d4cba8f93b65d6a504d80
record_format Article
spelling doaj-6f0547cb596d4cba8f93b65d6a504d802021-03-29T20:12:30ZengIEEEIEEE Access2169-35362017-01-015215482155610.1109/ACCESS.2017.27591668064620A Nonlinear Three-Phase Phase-Locked Loop Based on Linear Active Disturbance Rejection ControllerGuangyu Sun0https://orcid.org/0000-0003-4506-9979Yongli Li1Wei Jin2Lizhi Bu3Department of Electrical Engineering and Automation, Tianjin University, Tianjin, ChinaDepartment of Electrical Engineering and Automation, Tianjin University, Tianjin, ChinaDepartment of Electrical Engineering and Automation, Tianjin University, Tianjin, ChinaDepartment of Electrical Engineering and Automation, Tianjin University, Tianjin, ChinaThree-phase phase-locked loops (PLLs) are the most widely used synchronization components in power systems. For common PLL algorithms, there is a tradeoff between the filtering capability and dynamic response. In this paper, a nonlinear PLL (NLADRC-PLL) based on a linear active disturbance rejection controller (LADRC) is proposed to largely improve this tradeoff, thus simultaneously enhancing the filtering capability and dynamic response. With LADRC adopted in PLL structures (LADRC-PLL), good dynamic response and disturbance rejection capability can be achieved. To pursue further improvements in both filtering capability and dynamic response, the NLADRC-PLL derived from the LADRC-PLL is proposed, which adjusts the controller gains adaptively according to the disturbance. It is commonly known that there are stability problems for PLLs with adaptive controller gains, which are highly nonlinear systems. Thanks to the great robustness of LADRC structures, the stability of the proposed NLADRC-PLL is certified by the second method of Lyapunov in the nonlinear model. By comparing its PLL performance with the existing PLL algorithms, the superiority of the NLADRC-PLL in both filtering capability and dynamic response is verified through experimental results.https://ieeexplore.ieee.org/document/8064620/Phase-locked loops (PLL)linear active disturbance rejection control (LADRC)nonlinear controlthe second method of Lyapunov
collection DOAJ
language English
format Article
sources DOAJ
author Guangyu Sun
Yongli Li
Wei Jin
Lizhi Bu
spellingShingle Guangyu Sun
Yongli Li
Wei Jin
Lizhi Bu
A Nonlinear Three-Phase Phase-Locked Loop Based on Linear Active Disturbance Rejection Controller
IEEE Access
Phase-locked loops (PLL)
linear active disturbance rejection control (LADRC)
nonlinear control
the second method of Lyapunov
author_facet Guangyu Sun
Yongli Li
Wei Jin
Lizhi Bu
author_sort Guangyu Sun
title A Nonlinear Three-Phase Phase-Locked Loop Based on Linear Active Disturbance Rejection Controller
title_short A Nonlinear Three-Phase Phase-Locked Loop Based on Linear Active Disturbance Rejection Controller
title_full A Nonlinear Three-Phase Phase-Locked Loop Based on Linear Active Disturbance Rejection Controller
title_fullStr A Nonlinear Three-Phase Phase-Locked Loop Based on Linear Active Disturbance Rejection Controller
title_full_unstemmed A Nonlinear Three-Phase Phase-Locked Loop Based on Linear Active Disturbance Rejection Controller
title_sort nonlinear three-phase phase-locked loop based on linear active disturbance rejection controller
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description Three-phase phase-locked loops (PLLs) are the most widely used synchronization components in power systems. For common PLL algorithms, there is a tradeoff between the filtering capability and dynamic response. In this paper, a nonlinear PLL (NLADRC-PLL) based on a linear active disturbance rejection controller (LADRC) is proposed to largely improve this tradeoff, thus simultaneously enhancing the filtering capability and dynamic response. With LADRC adopted in PLL structures (LADRC-PLL), good dynamic response and disturbance rejection capability can be achieved. To pursue further improvements in both filtering capability and dynamic response, the NLADRC-PLL derived from the LADRC-PLL is proposed, which adjusts the controller gains adaptively according to the disturbance. It is commonly known that there are stability problems for PLLs with adaptive controller gains, which are highly nonlinear systems. Thanks to the great robustness of LADRC structures, the stability of the proposed NLADRC-PLL is certified by the second method of Lyapunov in the nonlinear model. By comparing its PLL performance with the existing PLL algorithms, the superiority of the NLADRC-PLL in both filtering capability and dynamic response is verified through experimental results.
topic Phase-locked loops (PLL)
linear active disturbance rejection control (LADRC)
nonlinear control
the second method of Lyapunov
url https://ieeexplore.ieee.org/document/8064620/
work_keys_str_mv AT guangyusun anonlinearthreephasephaselockedloopbasedonlinearactivedisturbancerejectioncontroller
AT yonglili anonlinearthreephasephaselockedloopbasedonlinearactivedisturbancerejectioncontroller
AT weijin anonlinearthreephasephaselockedloopbasedonlinearactivedisturbancerejectioncontroller
AT lizhibu anonlinearthreephasephaselockedloopbasedonlinearactivedisturbancerejectioncontroller
AT guangyusun nonlinearthreephasephaselockedloopbasedonlinearactivedisturbancerejectioncontroller
AT yonglili nonlinearthreephasephaselockedloopbasedonlinearactivedisturbancerejectioncontroller
AT weijin nonlinearthreephasephaselockedloopbasedonlinearactivedisturbancerejectioncontroller
AT lizhibu nonlinearthreephasephaselockedloopbasedonlinearactivedisturbancerejectioncontroller
_version_ 1724195097387466752