Study and Analysis of Integrated Wave Farms Using Linear Permanent-magnet Generators and Induction Generators

碩士 === 國立成功大學 === 電機工程學系碩博士班 === 100 === This thesis analyzed five wave energy conversion systems (WECSs): (1) single linear permanent-magnet generator (LPMG) connected to independent load, (2) single LPMG connected to grid with back-to-back converters, (3) two LPMGs connected in parallel with volta...

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Main Authors: Jhih-HsinLin, 林志昕
Other Authors: Li Wang
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/98145612218310645048
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spelling ndltd-TW-100NCKU54422182015-10-13T21:38:04Z http://ndltd.ncl.edu.tw/handle/98145612218310645048 Study and Analysis of Integrated Wave Farms Using Linear Permanent-magnet Generators and Induction Generators 整合採用線性永磁發電機與採用感應發電機之波浪場之研究與分析 Jhih-HsinLin 林志昕 碩士 國立成功大學 電機工程學系碩博士班 100 This thesis analyzed five wave energy conversion systems (WECSs): (1) single linear permanent-magnet generator (LPMG) connected to independent load, (2) single LPMG connected to grid with back-to-back converters, (3) two LPMGs connected in parallel with voltage-source converters then connected to grid with one voltage-source inverter, (4) two LPMGs connected to grid in parallel with their own back-to-back converters, (5) two LPMG wave farms integrated with a Wells turbine-based wave farm then connected to grid. The q-d axis equivalent mathematical model is developed under three-phase balanced loading conditions to establish the complete model of the studied system. Steady-state characteristics of these studied schemes under various wave conditions are examined while dynamic simulations of these studied WECSs subject to different disturbances are also carried out. Li Wang 王醴 2012 學位論文 ; thesis 191 zh-TW
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description 碩士 === 國立成功大學 === 電機工程學系碩博士班 === 100 === This thesis analyzed five wave energy conversion systems (WECSs): (1) single linear permanent-magnet generator (LPMG) connected to independent load, (2) single LPMG connected to grid with back-to-back converters, (3) two LPMGs connected in parallel with voltage-source converters then connected to grid with one voltage-source inverter, (4) two LPMGs connected to grid in parallel with their own back-to-back converters, (5) two LPMG wave farms integrated with a Wells turbine-based wave farm then connected to grid. The q-d axis equivalent mathematical model is developed under three-phase balanced loading conditions to establish the complete model of the studied system. Steady-state characteristics of these studied schemes under various wave conditions are examined while dynamic simulations of these studied WECSs subject to different disturbances are also carried out.
author2 Li Wang
author_facet Li Wang
Jhih-HsinLin
林志昕
author Jhih-HsinLin
林志昕
spellingShingle Jhih-HsinLin
林志昕
Study and Analysis of Integrated Wave Farms Using Linear Permanent-magnet Generators and Induction Generators
author_sort Jhih-HsinLin
title Study and Analysis of Integrated Wave Farms Using Linear Permanent-magnet Generators and Induction Generators
title_short Study and Analysis of Integrated Wave Farms Using Linear Permanent-magnet Generators and Induction Generators
title_full Study and Analysis of Integrated Wave Farms Using Linear Permanent-magnet Generators and Induction Generators
title_fullStr Study and Analysis of Integrated Wave Farms Using Linear Permanent-magnet Generators and Induction Generators
title_full_unstemmed Study and Analysis of Integrated Wave Farms Using Linear Permanent-magnet Generators and Induction Generators
title_sort study and analysis of integrated wave farms using linear permanent-magnet generators and induction generators
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/98145612218310645048
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