Voltage stability assessment for distrbuted generation in islanded microgrid system
The increasing energy demands are stressing the generation and transmission capabilities of the power system. Distributed generation (DG), which generally located in distribution systems, has the ability to meet some of the growing energy demands. However, unplanned application of individual dist...
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2012
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my-uthm-ep.23752021-10-31T07:49:32Z Voltage stability assessment for distrbuted generation in islanded microgrid system 2012-07 Hendi Gareh, Saleh Ali Ahmed TK Electrical engineering. Electronics Nuclear engineering TK1001-1841 Production of electric energy or power. Powerplants. Central stations The increasing energy demands are stressing the generation and transmission capabilities of the power system. Distributed generation (DG), which generally located in distribution systems, has the ability to meet some of the growing energy demands. However, unplanned application of individual distributed generators might cause other technical problems. The microgrid concept has the potential to solve major problems arising from large penetration of DG in distribution systems. A microgrid is not a forceful system when it is compared to a power system. This project proposes a simulation approach to study voltage stability index (VSI) and voltage stability analysis in microgrid system for the improvement of the dynamic voltage stability in a microgrid in case of the dynamic voltage insufficiency. A model of IEEE-14 Bus System has been presented as a case study of an islanded microgird system. This project also presented line voltage stability index analysis which accurately performs voltage stability analysis at each transmission line and precisely predicts voltage collapse on power systems. A formula to calculate VSI has been derived and applied on two cases on the system. To show the effectiveness of the proposed voltage stability analysis method, this approach is implemented in a microgrid test system (14-bus, 20 lines) in PSAT which is a MATLAB toolbox environment. The test system has four diesel DGs and a wind turbine connected with eleven constant loads. The dynamic simulation of the test system is carried out for various types of disturbances. Islanded mode of operation is considered in this study. Fast Voltage Stability Index (FVSI) and voltage stability analysis have been successfully implemented and analysed. 2012-07 Thesis http://eprints.uthm.edu.my/2375/ http://eprints.uthm.edu.my/2375/1/24p%20SALEH%20ALI%20AHMED%20HENDI%20GAREH.pdf text en public http://eprints.uthm.edu.my/2375/2/SALEH%20ALI%20AHMED%20HENDI%20GAREH%20COPYRIGHT%20DECLARATION.pdf text en staffonly http://eprints.uthm.edu.my/2375/3/SALEH%20ALI%20AHMED%20HENDI%20GAREH%20WATERMARK.pdf text en validuser mphil masters Universiti Tun Hussein Malaysia Fakulti Kejuruteraan Elektrik dan Elektronik |
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TK Electrical engineering Electronics Nuclear engineering TK Electrical engineering Electronics Nuclear engineering |
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TK Electrical engineering Electronics Nuclear engineering TK Electrical engineering Electronics Nuclear engineering Hendi Gareh, Saleh Ali Ahmed Voltage stability assessment for distrbuted generation in islanded microgrid system |
description |
The increasing energy demands are stressing the generation and transmission
capabilities of the power system. Distributed generation (DG), which generally
located in distribution systems, has the ability to meet some of the growing energy
demands. However, unplanned application of individual distributed generators might
cause other technical problems. The microgrid concept has the potential to solve
major problems arising from large penetration of DG in distribution systems. A
microgrid is not a forceful system when it is compared to a power system. This
project proposes a simulation approach to study voltage stability index (VSI) and
voltage stability analysis in microgrid system for the improvement of the dynamic
voltage stability in a microgrid in case of the dynamic voltage insufficiency. A
model of IEEE-14 Bus System has been presented as a case study of an islanded
microgird system. This project also presented line voltage stability index analysis
which accurately performs voltage stability analysis at each transmission line and
precisely predicts voltage collapse on power systems. A formula to calculate VSI has
been derived and applied on two cases on the system. To show the effectiveness of
the proposed voltage stability analysis method, this approach is implemented in a
microgrid test system (14-bus, 20 lines) in PSAT which is a MATLAB toolbox
environment. The test system has four diesel DGs and a wind turbine connected with
eleven constant loads. The dynamic simulation of the test system is carried out for
various types of disturbances. Islanded mode of operation is considered in this study.
Fast Voltage Stability Index (FVSI) and voltage stability analysis have been
successfully implemented and analysed. |
format |
Thesis |
qualification_name |
Master of Philosophy (M.Phil.) |
qualification_level |
Master's degree |
author |
Hendi Gareh, Saleh Ali Ahmed |
author_facet |
Hendi Gareh, Saleh Ali Ahmed |
author_sort |
Hendi Gareh, Saleh Ali Ahmed |
title |
Voltage stability assessment for distrbuted generation in islanded microgrid system |
title_short |
Voltage stability assessment for distrbuted generation in islanded microgrid system |
title_full |
Voltage stability assessment for distrbuted generation in islanded microgrid system |
title_fullStr |
Voltage stability assessment for distrbuted generation in islanded microgrid system |
title_full_unstemmed |
Voltage stability assessment for distrbuted generation in islanded microgrid system |
title_sort |
voltage stability assessment for distrbuted generation in islanded microgrid system |
granting_institution |
Universiti Tun Hussein Malaysia |
granting_department |
Fakulti Kejuruteraan Elektrik dan Elektronik |
publishDate |
2012 |
url |
http://eprints.uthm.edu.my/2375/1/24p%20SALEH%20ALI%20AHMED%20HENDI%20GAREH.pdf http://eprints.uthm.edu.my/2375/2/SALEH%20ALI%20AHMED%20HENDI%20GAREH%20COPYRIGHT%20DECLARATION.pdf http://eprints.uthm.edu.my/2375/3/SALEH%20ALI%20AHMED%20HENDI%20GAREH%20WATERMARK.pdf |
_version_ |
1747830946579611648 |