DocumentCode :
1308677
Title :
Reducing Variation in Solar Energy Supply Through Frequency Domain Analysis
Author :
Lavania, Chandrashekhar ; Rao, Shrisha ; Subrahmanian, Eswaran
Author_Institution :
Learning Labs., India Dev. Centre, Bangalore, India
Volume :
6
Issue :
2
fYear :
2012
fDate :
6/1/2012 12:00:00 AM
Firstpage :
196
Lastpage :
204
Abstract :
Solar irradiation tends to vary greatly throughout the day. The difference is very large especially between the early hours of sunshine, and during the peak hours of the day. Yet, it is desirable to supply a nearly constant amount of power to loads or power grids for high reliability. Hence, we propose a technique aimed at reducing the variation in solar power generation. Solar irradiation data is considered as a time-series data and the approach involves conversion of this data to the frequency domain through Fourier analysis. A more balanced supply by a set of plants is devised by interconnecting the plants, which also requires finding the optimum number of plants to connect using the above analysis. The effectiveness of the procedure is demonstrated by applying a suitable supply prediction algorithm over the individual plants and the effective data for the plants, using real data from Nevada, Texas, and California.
Keywords :
Fourier analysis; frequency-domain analysis; power system interconnection; solar power stations; Fourier analysis; balanced supply; frequency domain analysis; plant interconnection; solar energy supply; solar irradiation; solar power generation variation; supply prediction algorithm; time series data; variation reduction; Frequency domain analysis; Optimization; Power generation; Power supplies; Radiation effects; Renewable energy resources; Solar energy; Alternative energy; frequency domain analysis; saturation; solar irradiation; solar power plants; supply prediction;
fLanguage :
English
Journal_Title :
Systems Journal, IEEE
Publisher :
ieee
ISSN :
1932-8184
Type :
jour
DOI :
10.1109/JSYST.2011.2162796
Filename :
6003748
Link To Document :
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