Research on the Robustness of the Constant Speed Control of Hydraulic Energy Storage Generation

Energy storage plays a major role in solving the fluctuation and intermittence problem of wind and the effective use of wind power. The application of the hydraulic accumulator is the most efficient and convenient way to store wind energy in hydraulic wind turbines. A hydraulic energy storage genera...

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Main Authors: Zengguang Liu, Guolai Yang, Liejiang Wei, Daling Yue, Yanhua Tao
Format: Article
Language:English
Published: MDPI AG 2018-05-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/11/5/1310
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spelling doaj-5bcedb3ca400457791bea6f2918f7f932020-11-24T22:02:07ZengMDPI AGEnergies1996-10732018-05-01115131010.3390/en11051310en11051310Research on the Robustness of the Constant Speed Control of Hydraulic Energy Storage GenerationZengguang Liu0Guolai Yang1Liejiang Wei2Daling Yue3Yanhua Tao4Energy and Power Engineering College, Lanzhou University of Technology, Lanzhou 730050, ChinaEnergy and Power Engineering College, Lanzhou University of Technology, Lanzhou 730050, ChinaEnergy and Power Engineering College, Lanzhou University of Technology, Lanzhou 730050, ChinaEnergy and Power Engineering College, Lanzhou University of Technology, Lanzhou 730050, ChinaEnergy and Power Engineering College, Lanzhou University of Technology, Lanzhou 730050, ChinaEnergy storage plays a major role in solving the fluctuation and intermittence problem of wind and the effective use of wind power. The application of the hydraulic accumulator is the most efficient and convenient way to store wind energy in hydraulic wind turbines. A hydraulic energy storage generation system (HESGS) can transform hydraulic energy stored in the hydraulic accumulator into stable and constant electrical energy by controlling the variable motor, regardless of wind changes. The aim of the present study is to design a constant speed control method for the variable motor in the HESGS and investigate the influence of the controller’s main parameters on the resistance of the HESGS to external load power disturbances. Mathematical equations of all components in this system are introduced and an entire system simulation model is built. A double closed-loop control method of the variable motor is presented within this paper, which keeps the motor speed constant for the fixed frequency of electrical power generated by the HESGS. Ultimately, a series of simulations with different proportional gains and integral gains under the environment of changeless load power step are conducted. At the same time, comparison analyses of the experiment and simulation under variable load power step are performed. The results verify the correctness and the usability of the simulation model, and also indicate that the proposed control method is robust to the disturbances of changing load power.http://www.mdpi.com/1996-1073/11/5/1310energy storage systemaccumulator-controlled hydraulic motorhydraulic wind turbineconstant speed controlrobust control
collection DOAJ
language English
format Article
sources DOAJ
author Zengguang Liu
Guolai Yang
Liejiang Wei
Daling Yue
Yanhua Tao
spellingShingle Zengguang Liu
Guolai Yang
Liejiang Wei
Daling Yue
Yanhua Tao
Research on the Robustness of the Constant Speed Control of Hydraulic Energy Storage Generation
Energies
energy storage system
accumulator-controlled hydraulic motor
hydraulic wind turbine
constant speed control
robust control
author_facet Zengguang Liu
Guolai Yang
Liejiang Wei
Daling Yue
Yanhua Tao
author_sort Zengguang Liu
title Research on the Robustness of the Constant Speed Control of Hydraulic Energy Storage Generation
title_short Research on the Robustness of the Constant Speed Control of Hydraulic Energy Storage Generation
title_full Research on the Robustness of the Constant Speed Control of Hydraulic Energy Storage Generation
title_fullStr Research on the Robustness of the Constant Speed Control of Hydraulic Energy Storage Generation
title_full_unstemmed Research on the Robustness of the Constant Speed Control of Hydraulic Energy Storage Generation
title_sort research on the robustness of the constant speed control of hydraulic energy storage generation
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-05-01
description Energy storage plays a major role in solving the fluctuation and intermittence problem of wind and the effective use of wind power. The application of the hydraulic accumulator is the most efficient and convenient way to store wind energy in hydraulic wind turbines. A hydraulic energy storage generation system (HESGS) can transform hydraulic energy stored in the hydraulic accumulator into stable and constant electrical energy by controlling the variable motor, regardless of wind changes. The aim of the present study is to design a constant speed control method for the variable motor in the HESGS and investigate the influence of the controller’s main parameters on the resistance of the HESGS to external load power disturbances. Mathematical equations of all components in this system are introduced and an entire system simulation model is built. A double closed-loop control method of the variable motor is presented within this paper, which keeps the motor speed constant for the fixed frequency of electrical power generated by the HESGS. Ultimately, a series of simulations with different proportional gains and integral gains under the environment of changeless load power step are conducted. At the same time, comparison analyses of the experiment and simulation under variable load power step are performed. The results verify the correctness and the usability of the simulation model, and also indicate that the proposed control method is robust to the disturbances of changing load power.
topic energy storage system
accumulator-controlled hydraulic motor
hydraulic wind turbine
constant speed control
robust control
url http://www.mdpi.com/1996-1073/11/5/1310
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AT guolaiyang researchontherobustnessoftheconstantspeedcontrolofhydraulicenergystoragegeneration
AT liejiangwei researchontherobustnessoftheconstantspeedcontrolofhydraulicenergystoragegeneration
AT dalingyue researchontherobustnessoftheconstantspeedcontrolofhydraulicenergystoragegeneration
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