Variable speed and constant frequency control of hydraulic wind turbine with energy storage system

To eliminate the adverse effect of the fluctuation and intermittence of wind power on the quality and stability of electrical power system, an energy storage system is introduced into the closed-loop hydraulic system of hydraulic wind turbine for the first time. The whole hydraulic system consists o...

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Main Authors: Zengguang Liu, Guolai Yang, Liejiang Wei, Daling Yue
Format: Article
Language:English
Published: SAGE Publishing 2017-08-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814017715195
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spelling doaj-c6ae8a5ec0dd49a2b4554b0e4fbd00d52020-11-25T02:55:14ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402017-08-01910.1177/1687814017715195Variable speed and constant frequency control of hydraulic wind turbine with energy storage systemZengguang LiuGuolai YangLiejiang WeiDaling YueTo eliminate the adverse effect of the fluctuation and intermittence of wind power on the quality and stability of electrical power system, an energy storage system is introduced into the closed-loop hydraulic system of hydraulic wind turbine for the first time. The whole hydraulic system consists of a fixed displacement pump, a variable displacement motor, two proportional control valves and an energy storage system. The energy storage system absorbs or releases oil as the wind fluctuates. When the wind suddenly disappears, the generator can continue to produce electrical energy by means of the discharge of the hydraulic energy stored in the energy storage system. On the basis of modelling all hydraulic components, the simulation model of the hydraulic system is established. A new control method is presented within this article, which keeps the motor speed constant to generate constant frequency electrical power when the rotational speed of the wind wheel changes. Ultimately, simulations under the two conditions of step and sine wind wheel speeds are done. The simulation results demonstrate how the motor, the proportional valves and the energy storage system work together when the wind wheel speed varies and also prove validity of the control method we designed.https://doi.org/10.1177/1687814017715195
collection DOAJ
language English
format Article
sources DOAJ
author Zengguang Liu
Guolai Yang
Liejiang Wei
Daling Yue
spellingShingle Zengguang Liu
Guolai Yang
Liejiang Wei
Daling Yue
Variable speed and constant frequency control of hydraulic wind turbine with energy storage system
Advances in Mechanical Engineering
author_facet Zengguang Liu
Guolai Yang
Liejiang Wei
Daling Yue
author_sort Zengguang Liu
title Variable speed and constant frequency control of hydraulic wind turbine with energy storage system
title_short Variable speed and constant frequency control of hydraulic wind turbine with energy storage system
title_full Variable speed and constant frequency control of hydraulic wind turbine with energy storage system
title_fullStr Variable speed and constant frequency control of hydraulic wind turbine with energy storage system
title_full_unstemmed Variable speed and constant frequency control of hydraulic wind turbine with energy storage system
title_sort variable speed and constant frequency control of hydraulic wind turbine with energy storage system
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2017-08-01
description To eliminate the adverse effect of the fluctuation and intermittence of wind power on the quality and stability of electrical power system, an energy storage system is introduced into the closed-loop hydraulic system of hydraulic wind turbine for the first time. The whole hydraulic system consists of a fixed displacement pump, a variable displacement motor, two proportional control valves and an energy storage system. The energy storage system absorbs or releases oil as the wind fluctuates. When the wind suddenly disappears, the generator can continue to produce electrical energy by means of the discharge of the hydraulic energy stored in the energy storage system. On the basis of modelling all hydraulic components, the simulation model of the hydraulic system is established. A new control method is presented within this article, which keeps the motor speed constant to generate constant frequency electrical power when the rotational speed of the wind wheel changes. Ultimately, simulations under the two conditions of step and sine wind wheel speeds are done. The simulation results demonstrate how the motor, the proportional valves and the energy storage system work together when the wind wheel speed varies and also prove validity of the control method we designed.
url https://doi.org/10.1177/1687814017715195
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AT guolaiyang variablespeedandconstantfrequencycontrolofhydraulicwindturbinewithenergystoragesystem
AT liejiangwei variablespeedandconstantfrequencycontrolofhydraulicwindturbinewithenergystoragesystem
AT dalingyue variablespeedandconstantfrequencycontrolofhydraulicwindturbinewithenergystoragesystem
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