DocumentCode
1759165
Title
Maximising revenue for non-firm distributed wind generation with energy storage in an active management scheme
Author
Gill, S. ; Barbour, Edward ; Wilson, I. A. Grant ; Infield, David
Author_Institution
Dept. of Electron. & Electr. Eng., Univ. of Strathclyde, Glasgow, UK
Volume
7
Issue
5
fYear
2013
fDate
Sept. 2013
Firstpage
421
Lastpage
430
Abstract
The connection of high penetrations of renewable generation such as wind to distribution networks requires new active management techniques. Curtailing distributed generation during periods of network congestion allows for a higher penetration of distributed wind to connect, however, it reduces the potential revenue from these wind turbines. Energy storage can be used to alleviate this and the store can also be used to carry out other tasks such as trading on an electricity spot market, a mode of operation known as arbitrage. The combination of available revenue streams is crucial in the financial viability of energy storage. This study presents a heuristic algorithm for the optimisation of revenue generated by an energy storage unit working with two revenue streams: generation-curtailment reduction and arbitrage. The algorithm is used to demonstrate the ability of storage to generate revenue and to reduce generation curtailment for two case study networks. Studies carried out include a single wind farm and multiple wind farms connected under a `last-in-first-out´ principle of access. The results clearly show that storage using both operating modes increases revenue over either mode individually. Moreover, energy storage is shown to be effective at reducing curtailment while increasing the utilisation of circuits linking the distribution and transmission networks. Finally, renewable subsidies are considered as a potential third revenue stream. It is interesting to note that under current market agreements such subsidies have the potential to perversely encourage the installation of inefficient storage technologies, because of increased losses facilitating greater “utilisation” of renewable generation.
Keywords
distribution networks; energy storage; power generation economics; power system management; transmission networks; wind power plants; wind turbines; active management scheme; arbitrage operation; distribution networks; electricity spot market; energy storage unit; financial viability; generation-curtailment reduction; heuristic algorithm; last-in-first-out principle; network congestion; nonfirm distributed wind generation; operating modes; renewable generation utilisation; revenue streams; transmission networks; wind networks; wind turbines;
fLanguage
English
Journal_Title
Renewable Power Generation, IET
Publisher
iet
ISSN
1752-1416
Type
jour
DOI
10.1049/iet-rpg.2012.0036
Filename
6584908
Link To Document