Regulating reserve with large penetration of renewable energy using midterm dynamic simulation

A novel renewable energy intermittency model and a new midterm dynamic simulation tool in power systems are developed for examining dynamic behavior along the load curve for different combinations of the system operation reserves and renewable portfolio standard (RPS) rates. The system's...

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Main Authors: Chaoyang Jing, Baiqing Li
Format: Article
Language:English
Published: IEEE 2013-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8939543/
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author Chaoyang Jing
Baiqing Li
author_facet Chaoyang Jing
Baiqing Li
author_sort Chaoyang Jing
collection DOAJ
description A novel renewable energy intermittency model and a new midterm dynamic simulation tool in power systems are developed for examining dynamic behavior along the load curve for different combinations of the system operation reserves and renewable portfolio standard (RPS) rates. The system's import limits are considered. It is concluded that ignoring intermittency and governor effects is an inadequate method to assess intermittency impact. The intermittency midterm dynamic impact must be studied. For the studied system, the instability is expected to be about 25 % RPS with current reserves. Besides, the most vulnerable peak hour to instability is the afternoon peak hour when solar begins to drop off. This article stimulates further dynamic intermittency studies on the issues caused by renewable intermittency. The studies on the issues caused by renewable intermittency have not been revealed because of inadequate/incomprehensive study methodologies so that effective, mitigative solutions can be developed to guarantee the reliability of power grid when incorporating higher RPS if high operation reserves are impractical.
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spelling doaj.art-b985d765b625421a899ae052e38f445a2022-12-21T18:53:49ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202013-01-0111738010.1007/s40565-013-0006-28939543Regulating reserve with large penetration of renewable energy using midterm dynamic simulationChaoyang Jing0Baiqing Li1eMIT, LLC,Pasadena,CA,USA,91107China Electric Power Research Institute,Beijing,ChinaA novel renewable energy intermittency model and a new midterm dynamic simulation tool in power systems are developed for examining dynamic behavior along the load curve for different combinations of the system operation reserves and renewable portfolio standard (RPS) rates. The system's import limits are considered. It is concluded that ignoring intermittency and governor effects is an inadequate method to assess intermittency impact. The intermittency midterm dynamic impact must be studied. For the studied system, the instability is expected to be about 25 % RPS with current reserves. Besides, the most vulnerable peak hour to instability is the afternoon peak hour when solar begins to drop off. This article stimulates further dynamic intermittency studies on the issues caused by renewable intermittency. The studies on the issues caused by renewable intermittency have not been revealed because of inadequate/incomprehensive study methodologies so that effective, mitigative solutions can be developed to guarantee the reliability of power grid when incorporating higher RPS if high operation reserves are impractical.https://ieeexplore.ieee.org/document/8939543/Renewable energy intermittencyMidterm dynamic simulationPower systemsDynamic stabilityRenewable portfolio standard (RPS)
spellingShingle Chaoyang Jing
Baiqing Li
Regulating reserve with large penetration of renewable energy using midterm dynamic simulation
Journal of Modern Power Systems and Clean Energy
Renewable energy intermittency
Midterm dynamic simulation
Power systems
Dynamic stability
Renewable portfolio standard (RPS)
title Regulating reserve with large penetration of renewable energy using midterm dynamic simulation
title_full Regulating reserve with large penetration of renewable energy using midterm dynamic simulation
title_fullStr Regulating reserve with large penetration of renewable energy using midterm dynamic simulation
title_full_unstemmed Regulating reserve with large penetration of renewable energy using midterm dynamic simulation
title_short Regulating reserve with large penetration of renewable energy using midterm dynamic simulation
title_sort regulating reserve with large penetration of renewable energy using midterm dynamic simulation
topic Renewable energy intermittency
Midterm dynamic simulation
Power systems
Dynamic stability
Renewable portfolio standard (RPS)
url https://ieeexplore.ieee.org/document/8939543/
work_keys_str_mv AT chaoyangjing regulatingreservewithlargepenetrationofrenewableenergyusingmidtermdynamicsimulation
AT baiqingli regulatingreservewithlargepenetrationofrenewableenergyusingmidtermdynamicsimulation