Analysis of a load frequency control implementation in Swedish run-of-river hydropower stations

The total amount of frequency deviations have during the last decade increased exponentially in the Nordic synchronous power system. The transmission system operators have therefore decided to implement load frequency control as a new automatic control system to stem these frequency deviations. The...

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Main Author: Westberg, Andreas
Format: Others
Language:English
Published: Uppsala universitet, Elektricitetslära 2012
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-168296
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spelling ndltd-UPSALLA1-oai-DiVA.org-uu-1682962013-01-08T13:51:29ZAnalysis of a load frequency control implementation in Swedish run-of-river hydropower stationsengWestberg, AndreasUppsala universitet, Elektricitetslära2012Hydropowerpower systemfrequency controlled reservesload frequency controlMatlab SimulinkThe total amount of frequency deviations have during the last decade increased exponentially in the Nordic synchronous power system. The transmission system operators have therefore decided to implement load frequency control as a new automatic control system to stem these frequency deviations. The aim of this feasibility study is to analyse the effects of an LFC implementation in Swedish hydropower stations by using a more dynamic river governing. The method chosen to analyse the effects of LFC-governing was to create a Matlab Simulink hydropower station library including dynamic modules for rivers and turbine governors. The library is then used to create a river reach that is implemented in an ENTSO-E model for the Nordic frequency reserves. The governing of the river uses economical dispatch theory to optimally distribute a LFC setpoint signal from the ENTSO-E model to the different hydropower stations. Results show that the developed method has a future potential to create more frequency controlled reserves. By creating a central governing unit it was possible to govern frequency controlled reserves over an entire river reach under certain scenarios, but there are still many obstacles to overcome before an actual implementation. The method does however show both the possibilities and drawback of frequency controlled reserves in cascade coupled hydropower systems. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-168296UPTEC ES, 1650-8300 ; 12004application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Hydropower
power system
frequency controlled reserves
load frequency control
Matlab Simulink
spellingShingle Hydropower
power system
frequency controlled reserves
load frequency control
Matlab Simulink
Westberg, Andreas
Analysis of a load frequency control implementation in Swedish run-of-river hydropower stations
description The total amount of frequency deviations have during the last decade increased exponentially in the Nordic synchronous power system. The transmission system operators have therefore decided to implement load frequency control as a new automatic control system to stem these frequency deviations. The aim of this feasibility study is to analyse the effects of an LFC implementation in Swedish hydropower stations by using a more dynamic river governing. The method chosen to analyse the effects of LFC-governing was to create a Matlab Simulink hydropower station library including dynamic modules for rivers and turbine governors. The library is then used to create a river reach that is implemented in an ENTSO-E model for the Nordic frequency reserves. The governing of the river uses economical dispatch theory to optimally distribute a LFC setpoint signal from the ENTSO-E model to the different hydropower stations. Results show that the developed method has a future potential to create more frequency controlled reserves. By creating a central governing unit it was possible to govern frequency controlled reserves over an entire river reach under certain scenarios, but there are still many obstacles to overcome before an actual implementation. The method does however show both the possibilities and drawback of frequency controlled reserves in cascade coupled hydropower systems.
author Westberg, Andreas
author_facet Westberg, Andreas
author_sort Westberg, Andreas
title Analysis of a load frequency control implementation in Swedish run-of-river hydropower stations
title_short Analysis of a load frequency control implementation in Swedish run-of-river hydropower stations
title_full Analysis of a load frequency control implementation in Swedish run-of-river hydropower stations
title_fullStr Analysis of a load frequency control implementation in Swedish run-of-river hydropower stations
title_full_unstemmed Analysis of a load frequency control implementation in Swedish run-of-river hydropower stations
title_sort analysis of a load frequency control implementation in swedish run-of-river hydropower stations
publisher Uppsala universitet, Elektricitetslära
publishDate 2012
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-168296
work_keys_str_mv AT westbergandreas analysisofaloadfrequencycontrolimplementationinswedishrunofriverhydropowerstations
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