Annual Energy Production Estimation for Variable-speed Wind Turbine at High-altitude Site

This letter presents a systematic approach to estimate the annual energy production (AEP) of variable-speed wind turbines erected at high-altitude sites. Compared with the existing empirical-model based approaches, the proposed approach models the influence of the air density on the power production...

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Main Authors: Dongran Song, Songyue Zheng, Sheng Yang, Jian Yang, Mi Dong, Mei Su, Young Hoon Joo
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9146490/
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author Dongran Song
Songyue Zheng
Sheng Yang
Jian Yang
Mi Dong
Mei Su
Young Hoon Joo
author_facet Dongran Song
Songyue Zheng
Sheng Yang
Jian Yang
Mi Dong
Mei Su
Young Hoon Joo
author_sort Dongran Song
collection DOAJ
description This letter presents a systematic approach to estimate the annual energy production (AEP) of variable-speed wind turbines erected at high-altitude sites. Compared with the existing empirical-model based approaches, the proposed approach models the influence of the air density on the power production while employing the theoretical power curve. Consequently, the proposed approach provides a precise estimation of AEP, which can serve as a foundation of the optimum turbine-site matching design at different-altitude sites.
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spelling doaj.art-751bced75aec4e95bc97d7706c8454e92022-12-21T18:51:49ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202021-01-019368468710.35833/MPCE.2019.0002409146490Annual Energy Production Estimation for Variable-speed Wind Turbine at High-altitude SiteDongran Song0Songyue Zheng1Sheng Yang2Jian Yang3Mi Dong4Mei Su5Young Hoon Joo6School of Automation, Central South University,Changsha,China,410083School of Automation, Central South University,Changsha,China,410083School of Energy Science and Engineering, Central South University,Changsha,China,410083School of Automation, Central South University,Changsha,China,410083School of Automation, Central South University,Changsha,China,410083School of Automation, Central South University,Changsha,China,410083School of IT Information and Control Engineering, Kunsan National University,Kunsan,Korea,573701This letter presents a systematic approach to estimate the annual energy production (AEP) of variable-speed wind turbines erected at high-altitude sites. Compared with the existing empirical-model based approaches, the proposed approach models the influence of the air density on the power production while employing the theoretical power curve. Consequently, the proposed approach provides a precise estimation of AEP, which can serve as a foundation of the optimum turbine-site matching design at different-altitude sites.https://ieeexplore.ieee.org/document/9146490/Variable-speed wind turbineannual energy productionhigh-altitude siteturbine-site matching
spellingShingle Dongran Song
Songyue Zheng
Sheng Yang
Jian Yang
Mi Dong
Mei Su
Young Hoon Joo
Annual Energy Production Estimation for Variable-speed Wind Turbine at High-altitude Site
Journal of Modern Power Systems and Clean Energy
Variable-speed wind turbine
annual energy production
high-altitude site
turbine-site matching
title Annual Energy Production Estimation for Variable-speed Wind Turbine at High-altitude Site
title_full Annual Energy Production Estimation for Variable-speed Wind Turbine at High-altitude Site
title_fullStr Annual Energy Production Estimation for Variable-speed Wind Turbine at High-altitude Site
title_full_unstemmed Annual Energy Production Estimation for Variable-speed Wind Turbine at High-altitude Site
title_short Annual Energy Production Estimation for Variable-speed Wind Turbine at High-altitude Site
title_sort annual energy production estimation for variable speed wind turbine at high altitude site
topic Variable-speed wind turbine
annual energy production
high-altitude site
turbine-site matching
url https://ieeexplore.ieee.org/document/9146490/
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