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  4. Impact of distributed photovoltaic generation and customer loads on power quality of a distribution system
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Impact of distributed photovoltaic generation and customer loads on power quality of a distribution system

Full metadata

Description

There has been a considerable growth in distributed photovoltaic (PV) genera-tion and its integration in electric power distribution systems. This has led to a change in the distribution system infrastructure. Properly planned distributed gen-eration can offer a variety of benefits for system operations and enhance opera-tional performance of the distribution system. However, high penetration of PV resources can give rise to operating conditions which do not arise in traditional systems and one of the potential issues that needs to be addressed involves impact on power quality of the system with respect to the spectral distortion in voltages and currents.

The test bed feeder model representing a real operational distribution feeder is developed in OpenDSS and the feeder modeling takes into consideration the ob-jective of analysis and frequency of interest. Extensive metering infrastructure and measurements are utilized for validation of the model at harmonic frequencies. The harmonic study performed is divided into two sections: study of impact of non-linear loads on total harmonic voltage and current distortions and study of impact of PV resources on high frequency spectral distortion in voltages and cur-rents. The research work incorporates different harmonic study methodologies such as harmonic and high frequency power flow, and frequency scan study. The general conclusions are presented based on the simulation results and in addition, scope for future work is discussed.

Date Created
2014
Contributors
  • Joshi, Titiksha Vjay (Author)
  • Heydt, Gerald T (Thesis advisor)
  • Ayyanar, Raja (Committee member)
  • Vittal, Vijay (Committee member)
  • Arizona State University (Publisher)
Topical Subject
  • Electrical Engineering
  • distribution system
  • high frequency
  • Photovoltaic
  • power quality
  • Photovoltaic power systems
  • Distributed generation of electric power
  • Electric power systems--Quality control.
  • Electric power systems
Resource Type
Text
Genre
Masters Thesis
Academic theses
Extent
xii, 91 p. : ill. (some col.)
Language
eng
Copyright Statement
In Copyright
Reuse Permissions
All Rights Reserved
Primary Member of
ASU Electronic Theses and Dissertations
Peer-reviewed
No
Open Access
No
Handle
https://hdl.handle.net/2286/R.I.26835
Statement of Responsibility
by Titiksha Vjay Joshi
Description Source
Viewed on January 15, 2015
Level of coding
full
Note
Partial requirement for: M.S., Arizona State University, 2014
Note type
thesis
Includes bibliographical references (p. 83-87)
Note type
bibliography
Field of study: Electrical engineering
System Created
  • 2014-12-01 07:02:03
System Modified
  • 2021-08-30 01:32:15
  •     
  • 1 year 6 months ago
Additional Formats
  • OAI Dublin Core
  • MODS XML

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