Effect of load current harmonics on vibration of three-phase generator

Almost all today electrical loads are considered non-linear such as switch mode power supply (SMPS) for powering computer and mobile phone or variable speed drive (VSD) for driving home and industrial electric motors. These loads generate ac non-sinusoidal current containing a lot of harmonics as in...

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Main Author: Kastawan I Made Wiwit
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201819711023
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spelling doaj-36f7149a21344480b1a01743db2e07eb2021-02-02T03:49:03ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011971102310.1051/matecconf/201819711023matecconf_aasec2018_11023Effect of load current harmonics on vibration of three-phase generatorKastawan I Made WiwitAlmost all today electrical loads are considered non-linear such as switch mode power supply (SMPS) for powering computer and mobile phone or variable speed drive (VSD) for driving home and industrial electric motors. These loads generate ac non-sinusoidal current containing a lot of harmonics as indicated by its high total harmonics distortion (THD) figure. Current harmonics bring negative effects into all electrical power system components, including three-phase generator. This paper provides analysis of load current harmonics effects on vibration of three-phase generator. Three different laboratory experiments have been conducted i.e. three-phase linear resistive loading, non-linear loading with a three-phase ac/dc converter and non-linear loading with three single-phase capacitor filtered ac/dc converters. Results show that the higher load current harmonics content the higher is vibration of the three-phase generator. Non-linear loading with a three-phase ac/dc converter that generate about 24.7% THD gives an increase of 4.3% and 5.5% in average of vertical and horizontal vibrations of the three-phase generator respectively. Further, non-linear loading with three single-phase capacitor filtered ac/dc converters that generate THD as high as 74.9% gives significant increase of 28.1% and 23.6% in average of vertical and horizontal vibrations respectively.https://doi.org/10.1051/matecconf/201819711023
collection DOAJ
language English
format Article
sources DOAJ
author Kastawan I Made Wiwit
spellingShingle Kastawan I Made Wiwit
Effect of load current harmonics on vibration of three-phase generator
MATEC Web of Conferences
author_facet Kastawan I Made Wiwit
author_sort Kastawan I Made Wiwit
title Effect of load current harmonics on vibration of three-phase generator
title_short Effect of load current harmonics on vibration of three-phase generator
title_full Effect of load current harmonics on vibration of three-phase generator
title_fullStr Effect of load current harmonics on vibration of three-phase generator
title_full_unstemmed Effect of load current harmonics on vibration of three-phase generator
title_sort effect of load current harmonics on vibration of three-phase generator
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Almost all today electrical loads are considered non-linear such as switch mode power supply (SMPS) for powering computer and mobile phone or variable speed drive (VSD) for driving home and industrial electric motors. These loads generate ac non-sinusoidal current containing a lot of harmonics as indicated by its high total harmonics distortion (THD) figure. Current harmonics bring negative effects into all electrical power system components, including three-phase generator. This paper provides analysis of load current harmonics effects on vibration of three-phase generator. Three different laboratory experiments have been conducted i.e. three-phase linear resistive loading, non-linear loading with a three-phase ac/dc converter and non-linear loading with three single-phase capacitor filtered ac/dc converters. Results show that the higher load current harmonics content the higher is vibration of the three-phase generator. Non-linear loading with a three-phase ac/dc converter that generate about 24.7% THD gives an increase of 4.3% and 5.5% in average of vertical and horizontal vibrations of the three-phase generator respectively. Further, non-linear loading with three single-phase capacitor filtered ac/dc converters that generate THD as high as 74.9% gives significant increase of 28.1% and 23.6% in average of vertical and horizontal vibrations respectively.
url https://doi.org/10.1051/matecconf/201819711023
work_keys_str_mv AT kastawanimadewiwit effectofloadcurrentharmonicsonvibrationofthreephasegenerator
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