Performa Islanding Generator Induksi Pada Sistem Distributed Generation

In the distributed generation (DG) system, the induction generator can be connected in parallel with the grid. The connected loads such as passive or active loads, e.g. induction motor. In certain condition, grid could be disconnected and causing the islanding operation of DG system. The islanding p...

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Main Authors: , HENDRA TEGUH MARTUA, , M. Isnaeni B.S., M.T.
Format: Thesis
Published: [Yogyakarta] : Universitas Gadjah Mada 2014
Subjects:
ETD
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author , HENDRA TEGUH MARTUA
, M. Isnaeni B.S., M.T.
author_facet , HENDRA TEGUH MARTUA
, M. Isnaeni B.S., M.T.
author_sort , HENDRA TEGUH MARTUA
collection UGM
description In the distributed generation (DG) system, the induction generator can be connected in parallel with the grid. The connected loads such as passive or active loads, e.g. induction motor. In certain condition, grid could be disconnected and causing the islanding operation of DG system. The islanding performance of induction generator feeding passive and active loads in various loading condition could be investigated. This research aims to investigate the induction generator performance during grid-connected DG system and the islanding condition feeding passive and active loads. This research is simulated using SimPowerSystems in Matlab R2011a. This simulation is performed using several schemes, i.e. grid-connected DG system, grid-disconnected DG system without any capacitor and the islanding condition with applying the capacitor. Each scheme is consisted of the various amounts of resistive loads (R), induction motor, and resistive-inductive loads (R-L). Constant torque induction generator is used in this research. During the islanding condition, the induction generator requires the reactive power that can be absorbed from the capacitor. During the islanding condition at low loading, the rotor speed would be decreasing in responsible to the constant torque as compared to before the loss of grid condition, and it was followed by the increasing of voltage level at the load. Meanwhile, in the overload condition with passive loads, the rotor speed would be increasing in responsible to the constant torque as compared to before the loss of grid condition. At the same time while loaded by the active loads, the induction generator can�t supply the required active power load at full load or more of its own rating. Keywords : Induction generator (constant torque), passive loads, active loads, islanding, loss of grid.
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spelling oai:generic.eprints.org:1320532016-03-04T07:56:52Z https://repository.ugm.ac.id/132053/ Performa Islanding Generator Induksi Pada Sistem Distributed Generation , HENDRA TEGUH MARTUA , M. Isnaeni B.S., M.T. ETD In the distributed generation (DG) system, the induction generator can be connected in parallel with the grid. The connected loads such as passive or active loads, e.g. induction motor. In certain condition, grid could be disconnected and causing the islanding operation of DG system. The islanding performance of induction generator feeding passive and active loads in various loading condition could be investigated. This research aims to investigate the induction generator performance during grid-connected DG system and the islanding condition feeding passive and active loads. This research is simulated using SimPowerSystems in Matlab R2011a. This simulation is performed using several schemes, i.e. grid-connected DG system, grid-disconnected DG system without any capacitor and the islanding condition with applying the capacitor. Each scheme is consisted of the various amounts of resistive loads (R), induction motor, and resistive-inductive loads (R-L). Constant torque induction generator is used in this research. During the islanding condition, the induction generator requires the reactive power that can be absorbed from the capacitor. During the islanding condition at low loading, the rotor speed would be decreasing in responsible to the constant torque as compared to before the loss of grid condition, and it was followed by the increasing of voltage level at the load. Meanwhile, in the overload condition with passive loads, the rotor speed would be increasing in responsible to the constant torque as compared to before the loss of grid condition. At the same time while loaded by the active loads, the induction generator can�t supply the required active power load at full load or more of its own rating. Keywords : Induction generator (constant torque), passive loads, active loads, islanding, loss of grid. [Yogyakarta] : Universitas Gadjah Mada 2014 Thesis NonPeerReviewed , HENDRA TEGUH MARTUA and , M. Isnaeni B.S., M.T. (2014) Performa Islanding Generator Induksi Pada Sistem Distributed Generation. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=72569
spellingShingle ETD
, HENDRA TEGUH MARTUA
, M. Isnaeni B.S., M.T.
Performa Islanding Generator Induksi Pada Sistem Distributed Generation
title Performa Islanding Generator Induksi Pada Sistem Distributed Generation
title_full Performa Islanding Generator Induksi Pada Sistem Distributed Generation
title_fullStr Performa Islanding Generator Induksi Pada Sistem Distributed Generation
title_full_unstemmed Performa Islanding Generator Induksi Pada Sistem Distributed Generation
title_short Performa Islanding Generator Induksi Pada Sistem Distributed Generation
title_sort performa islanding generator induksi pada sistem distributed generation
topic ETD
work_keys_str_mv AT hendrateguhmartua performaislandinggeneratorinduksipadasistemdistributedgeneration
AT misnaenibsmt performaislandinggeneratorinduksipadasistemdistributedgeneration