Research on the Strong Robust Control Strategy of the New Elastic Potential Energy Storage System in Energy Storage Process

Purposes To achieve stable and efficient energy storage in the new elastic potential energy storage system, it is first necessary to establish an accurate mathematical model to reveal the operating characteristics of the energy storage box, and complete the calculation and configuration model of its...

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Main Authors: Xiaoming ZHENG, Zhibin SONG, Yahong XING, Yang YU, Yan LIANG, Peng WANG, Yingying HU
Format: Article
Language:English
Published: Editorial Office of Journal of Taiyuan University of Technology 2024-01-01
Series:Taiyuan Ligong Daxue xuebao
Subjects:
Online Access:https://tyutjournal.tyut.edu.cn/englishpaper/show-2242.html
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author Xiaoming ZHENG
Zhibin SONG
Yahong XING
Yang YU
Yan LIANG
Peng WANG
Yingying HU
author_facet Xiaoming ZHENG
Zhibin SONG
Yahong XING
Yang YU
Yan LIANG
Peng WANG
Yingying HU
author_sort Xiaoming ZHENG
collection DOAJ
description Purposes To achieve stable and efficient energy storage in the new elastic potential energy storage system, it is first necessary to establish an accurate mathematical model to reveal the operating characteristics of the energy storage box, and complete the calculation and configuration model of its capacity and power; Second, a strong robust control algorithm is needed to achieve the fast torque response while effectively suppressing disturbances. Methods In this paper, an accurate mathematical model of the energy storage system was established. Combined with the backstepping control algorithm, the direct torque adaptive control method of the permanent magnet synchronous motor is designed, and a new robust control strategy for the energy storage process of the elastic potential energy storage system is formed. Conclusions Through experiments, it has been proven that this control strategy has a fast torque response speed and can quickly match the rapidly increasing reverse torque of the energy storage box with minimal pulsation. At the same time, it can effectively restrain the unique moment of inertia parameter disturbance of the energy storage system, and then achieve stable and efficient energy storage.
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spelling doaj.art-87fbdcc66af6491cbf941c2112b707ce2024-04-15T09:17:21ZengEditorial Office of Journal of Taiyuan University of TechnologyTaiyuan Ligong Daxue xuebao1007-94322024-01-01551313710.16355/j.tyut.1007-9432.202304001007-9432(2024)01-0031-07Research on the Strong Robust Control Strategy of the New Elastic Potential Energy Storage System in Energy Storage ProcessXiaoming ZHENG0Zhibin SONG1Yahong XING2Yang YU3Yan LIANG4Peng WANG5Yingying HU6State Grid Economic and Technological Research Institute of Shanxi, Taiyuan 030002, ChinaState Grid Economic and Technological Research Institute of Shanxi, Taiyuan 030002, ChinaState Grid Economic and Technological Research Institute of Shanxi, Taiyuan 030002, ChinaState Key Laboratory of Alternate Electrical Power System with Renewable Energy Source, North China Electric Power University (Baoding), Baoding 071003, ChinaState Grid Economic and Technological Research Institute of Shanxi, Taiyuan 030002, ChinaState Grid Economic and Technological Research Institute of Shanxi, Taiyuan 030002, ChinaState Grid Economic and Technological Research Institute of Shanxi, Taiyuan 030002, ChinaPurposes To achieve stable and efficient energy storage in the new elastic potential energy storage system, it is first necessary to establish an accurate mathematical model to reveal the operating characteristics of the energy storage box, and complete the calculation and configuration model of its capacity and power; Second, a strong robust control algorithm is needed to achieve the fast torque response while effectively suppressing disturbances. Methods In this paper, an accurate mathematical model of the energy storage system was established. Combined with the backstepping control algorithm, the direct torque adaptive control method of the permanent magnet synchronous motor is designed, and a new robust control strategy for the energy storage process of the elastic potential energy storage system is formed. Conclusions Through experiments, it has been proven that this control strategy has a fast torque response speed and can quickly match the rapidly increasing reverse torque of the energy storage box with minimal pulsation. At the same time, it can effectively restrain the unique moment of inertia parameter disturbance of the energy storage system, and then achieve stable and efficient energy storage.https://tyutjournal.tyut.edu.cn/englishpaper/show-2242.htmlelastic potential energy storagedirect torque controlself-adaption control
spellingShingle Xiaoming ZHENG
Zhibin SONG
Yahong XING
Yang YU
Yan LIANG
Peng WANG
Yingying HU
Research on the Strong Robust Control Strategy of the New Elastic Potential Energy Storage System in Energy Storage Process
Taiyuan Ligong Daxue xuebao
elastic potential energy storage
direct torque control
self-adaption control
title Research on the Strong Robust Control Strategy of the New Elastic Potential Energy Storage System in Energy Storage Process
title_full Research on the Strong Robust Control Strategy of the New Elastic Potential Energy Storage System in Energy Storage Process
title_fullStr Research on the Strong Robust Control Strategy of the New Elastic Potential Energy Storage System in Energy Storage Process
title_full_unstemmed Research on the Strong Robust Control Strategy of the New Elastic Potential Energy Storage System in Energy Storage Process
title_short Research on the Strong Robust Control Strategy of the New Elastic Potential Energy Storage System in Energy Storage Process
title_sort research on the strong robust control strategy of the new elastic potential energy storage system in energy storage process
topic elastic potential energy storage
direct torque control
self-adaption control
url https://tyutjournal.tyut.edu.cn/englishpaper/show-2242.html
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