Title
Development and Field Test of Movable Conduction-Cooled High Temperature SMES
Abstract
With the large scale renewable energy being put into utility power system, the active power imbalance becomes one of the major problems. The novel power system stabilizer (PSS) based on energy storage system (ESS) seems to be a potential solution to mitigate fluctuation of both power generation and consumption. Superconducting magnetic energy storage system (SMES) is getting increasing acceptance in various applications of power system for higher efficiency and faster response than other ES devices. This paper introduces the development of a movable conduction-cooled high temperature SMES module as potential energy storage system. For utility power system use, the developed SMES system is with the feature of movable, high temperature superconducting (HTS) and conduction cool. Laboratory experiments including operational characteristics and improvement of power system stability have been carried out. Field experiments have also been carried out in Laohukou hydro power plant in Hubei province of China. Results of both laboratorial and field tests demonstrate the well design and manufacture of the developed movable SMES module.
Year
DOI
Venue
2010
10.1109/IAS.2010.5614527
IAS
Keywords
Field
DocType
large scale renewable energy,superconducting magnetic energy storage,power system stability,utility power system,movable,superconducting magnetic energy storage system,field experiment,power system transient stability,conduction cool,movable conduction-cooled high temperature smes module,power system stabilizer,high temperature superconducting,laohukou hydropower plant,superconducting magnet energy storage,storage system,hydro power plant,energy storage,power system,potential energy,indexing terms,generators,renewable energy,power generation
Energy storage,Renewable energy,Computer data storage,Mechanical engineering,Electric power system,AC power,Converters,Superconducting magnetic energy storage,Engineering,Electricity generation
Conference
Volume
Issue
ISSN
null
null
0197-2618
ISBN
Citations 
PageRank 
978-1-4244-6393-0
0
0.34
References 
Authors
0
7
Name
Order
Citations
PageRank
Jiakun Fang1103.27
Haishun Sun231.05
Li Ren300.34
Jinyu Wen423326.09
Wei-Jen Lee500.68
Youping Xu600.34
Xiaotao Peng700.34