2011Unpublished venueRequires access

Distributed energy storage system in wind power generation

Jintao Cui, Ke‐Jun Li, Ying Sun, Zhenyu Zou, Yue Ma

Open publisher page 22 citations

Abstract

With the rapid development of wind power generation during these years, many large wind farms were established, and the adverse impact of wind power fluctuations on power grid has become significant. In this paper, we put forward an improvement scheme of distributed energy storage system to cope with this effect, and to maximize the utilization ratio of wind power. Energy storage systems can smooth the fluctuations of wind power, and they perform better in larger wind farms. Unlike traditional methods, the energy storage systems are located besides load centers rather than wind farms, causing no more investment. In our plan, charging stations for electric vehicles are built within some of the energy storage stations and these electric vehicles can also be regarded as energy storage devices. Different kinds of devices are applied to improve the response speed and capacity of energy storage system. Furthermore, these distributed energy storage systems have a better performance if combined with other kinds of renewable energy generation. Our research is based on digital simulation and dynamic experiment, and the results show that this distributed energy storage plan is more effective than traditional methods.

About this research paper

What this paper is about

With the rapid development of wind power generation during these years, many large wind farms were established, and the adverse impact of wind power fluctuations on power grid has become significant. In this paper, we put forward an improvement scheme of distributed energy storage system to cope with this effect, and to maximize the utilization ratio of wind power. Energy storage systems can smooth the fluctuations of wind power, and they perform better in larger wind farms. Unlike traditional methods, the energy storage systems are located besides load centers rather than wind farms, causing no more investment. In our plan, charging stations for electric vehicles are built within some of the energy storage stations and these electric vehicles can also be regarded as energy storage devices. Different kinds of devices are applied to improve the response speed and capacity of energy storage system. Furthermore, these distributed energy storage systems have a better performance if combined with other kinds of renewable energy generation. Our research is based on digital simulation and dynamic experiment, and the results show that this distributed energy storage plan is more effective than traditional methods.

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OpenAlex reports 22 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

With the rapid development of wind power generation during these years, many large wind farms were established, and the adverse impact of wind power fluctuations on power grid has become significant. In this paper, we put forward an improvement scheme of distributed energy storage system to cope with this effect, and to maximize the utilization ratio of wind power. Energy storage systems can smooth the fluctuations of wind power, and they perform better in larger wind farms. Unlike traditional methods, the energy storage systems are located besides load centers rather than wind farms, causing no more investment. In our plan, charging stations for electric vehicles are built within some of the energy storage stations and these electric vehicles can also be regarded as energy storage devices. Different kinds of devices are applied to improve the response speed and capacity of energy storage system. Furthermore, these distributed energy storage systems have a better performance if combined with other kinds of renewable energy generation. Our research is based on digital simulation and dynamic experiment, and the results show that this distributed energy storage plan is more effective than traditional methods.

Key concepts: Wind power, Pumped-storage hydroelectricity, Energy storage, Grid energy storage, Distributed generation, Intermittent energy source, Wind hybrid power systems, Renewable energy

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