Operating reserve assessment of wind integrated power systems

Wind power is variable, uncertain, intermittent and site specific. The operating capacity credit associated with a wind farm is therefore considerably different from that assigned to a conventional generating unit and as wind penetrations in conventional power systems increase, it is vital that wind...

Full description

Bibliographic Details
Main Author: Karki, Bipul
Other Authors: Billinton, R.
Format: Others
Language:en
Published: University of Saskatchewan 2010
Subjects:
Online Access:http://library.usask.ca/theses/available/etd-03252010-174641/
id ndltd-USASK-oai-usask.ca-etd-03252010-174641
record_format oai_dc
spelling ndltd-USASK-oai-usask.ca-etd-03252010-1746412013-01-08T16:34:25Z Operating reserve assessment of wind integrated power systems Karki, Bipul wind power modeling operating reserve unit commitment risk wind power power systems Wind power is variable, uncertain, intermittent and site specific. The operating capacity credit associated with a wind farm is therefore considerably different from that assigned to a conventional generating unit and as wind penetrations in conventional power systems increase, it is vital that wind power be fully integrated in power system planning and operating protocols.<p> The research described in this thesis is focused on the determination of the operating capacity benefits associated with adding wind power to a conventional power system. Probabilistic techniques are used to quantify the risk and operating capacity benefits under various risk criteria. A short term wind speed probability distribution and short term wind power probability distribution forecasting model is presented and a multi-state model of a wind farm is utilized to determine several operating performance indices. The concepts and developed model are illustrated by application to two published test systems. The increase in peak load carrying capability attributable to added wind power is examined under a range of system operating conditions that include the effects of seasonality, locality and wind parameter trends. The operating capacity credit associated with dependent and independent wind farms is also examined. The dependent and independent conditions provide boundary values that clearly indicate the effects of wind speed correlation. Well-being analyses which incorporate the accepted deterministic criterion in an evaluation of the system operating state probabilities is applied to the wind integrated test systems using a novel approach to calculate the operating state probabilities. Most modern power systems are interconnected to one or more other power systems and therefore have increased access and exposure to wind power. This thesis examines the risk benefits associated with wind integrated interconnected power systems under various conditions using the two test systems.<p> The research described in this thesis clearly illustrates that the operating capacity benefits associated with wind power can be quantified and used in making generating capacity scheduling decisions in a wind integrated power system. Billinton, R. University of Saskatchewan 2010-04-05 text application/pdf http://library.usask.ca/theses/available/etd-03252010-174641/ http://library.usask.ca/theses/available/etd-03252010-174641/ en unrestricted I hereby certify that, if appropriate, I have obtained and attached hereto a written permission statement from the owner(s) of each third party copyrighted matter to be included in my thesis, dissertation, or project report, allowing distribution as specified below. I certify that the version I submitted is the same as that approved by my advisory committee. I hereby grant to University of Saskatchewan or its agents the non-exclusive license to archive and make accessible, under the conditions specified below, my thesis, dissertation, or project report in whole or in part in all forms of media, now or hereafter known. I retain all other ownership rights to the copyright of the thesis, dissertation or project report. I also retain the right to use in future works (such as articles or books) all or part of this thesis, dissertation, or project report.
collection NDLTD
language en
format Others
sources NDLTD
topic wind power modeling
operating reserve
unit commitment risk
wind power
power systems
spellingShingle wind power modeling
operating reserve
unit commitment risk
wind power
power systems
Karki, Bipul
Operating reserve assessment of wind integrated power systems
description Wind power is variable, uncertain, intermittent and site specific. The operating capacity credit associated with a wind farm is therefore considerably different from that assigned to a conventional generating unit and as wind penetrations in conventional power systems increase, it is vital that wind power be fully integrated in power system planning and operating protocols.<p> The research described in this thesis is focused on the determination of the operating capacity benefits associated with adding wind power to a conventional power system. Probabilistic techniques are used to quantify the risk and operating capacity benefits under various risk criteria. A short term wind speed probability distribution and short term wind power probability distribution forecasting model is presented and a multi-state model of a wind farm is utilized to determine several operating performance indices. The concepts and developed model are illustrated by application to two published test systems. The increase in peak load carrying capability attributable to added wind power is examined under a range of system operating conditions that include the effects of seasonality, locality and wind parameter trends. The operating capacity credit associated with dependent and independent wind farms is also examined. The dependent and independent conditions provide boundary values that clearly indicate the effects of wind speed correlation. Well-being analyses which incorporate the accepted deterministic criterion in an evaluation of the system operating state probabilities is applied to the wind integrated test systems using a novel approach to calculate the operating state probabilities. Most modern power systems are interconnected to one or more other power systems and therefore have increased access and exposure to wind power. This thesis examines the risk benefits associated with wind integrated interconnected power systems under various conditions using the two test systems.<p> The research described in this thesis clearly illustrates that the operating capacity benefits associated with wind power can be quantified and used in making generating capacity scheduling decisions in a wind integrated power system.
author2 Billinton, R.
author_facet Billinton, R.
Karki, Bipul
author Karki, Bipul
author_sort Karki, Bipul
title Operating reserve assessment of wind integrated power systems
title_short Operating reserve assessment of wind integrated power systems
title_full Operating reserve assessment of wind integrated power systems
title_fullStr Operating reserve assessment of wind integrated power systems
title_full_unstemmed Operating reserve assessment of wind integrated power systems
title_sort operating reserve assessment of wind integrated power systems
publisher University of Saskatchewan
publishDate 2010
url http://library.usask.ca/theses/available/etd-03252010-174641/
work_keys_str_mv AT karkibipul operatingreserveassessmentofwindintegratedpowersystems
_version_ 1716532373041971200