IMPROVED THE ADAPTATION FOR THREE PHASE ACTIVE FILTER UNDER NON-IDEAL-LOAD USING SAMPLE CURRENT CONTROL

In this paper, a comparison between sample current control and direct current control to show the efficiency of the two current control method of Active Power Filter. The main function of the scheme was a duty by the two-level three phases inverter. According to the classic approach, transistors are...

Full description

Bibliographic Details
Main Authors: Huynh Le Minh Thien, Nguyen Xuan Tien, Tran Thanh Vu, Ho Van Cuu
Format: Article
Language:English
Published: Zibeline International 2019-04-01
Series:Journal of Mechanical Engineering Research and Developments
Subjects:
Online Access:https://jmerd.org.my/Paper/Vol.42,No.3(2019)/76-80.pdf
id doaj-87ff43a81f9845888757ccc9ecd72886
record_format Article
spelling doaj-87ff43a81f9845888757ccc9ecd728862020-11-25T02:30:15ZengZibeline InternationalJournal of Mechanical Engineering Research and Developments1024-17522019-04-01423768010.26480/jmerd.03.2019.76.80IMPROVED THE ADAPTATION FOR THREE PHASE ACTIVE FILTER UNDER NON-IDEAL-LOAD USING SAMPLE CURRENT CONTROLHuynh Le Minh Thien Nguyen Xuan TienTran Thanh VuHo Van CuuIn this paper, a comparison between sample current control and direct current control to show the efficiency of the two current control method of Active Power Filter. The main function of the scheme was a duty by the two-level three phases inverter. According to the classic approach, transistors are converted depending on the sign of the current error, in turn, sampled at equal intervals. Both methods follow the synchronous toggle principle. In the first method, the current vector at the end of the interval is predicted for two possible cases when the operating voltage vector towards the current fault or zero voltage vector is applied. An error generates a smaller current error at the end of the selected sampling period, thus reducing the switching frequency. In the second method, the most appropriate operating voltage vector will succeed in zero vectors over the same period. A simple algorithm is used to calculate the duty cycle to achieve the smallest possible error. Both methods are simulated with three different load modes: no load, RL load, and nonlinear load. At the end of the article, the behavior of the second method, SCC, is worth more. The simulation results demonstrate the viability and effectiveness of the two technique of current control in reducing the ripple, losses, and Total Harmonic Distortion of supply current.https://jmerd.org.my/Paper/Vol.42,No.3(2019)/76-80.pdfActive power filtersample current control - SCCdirect current control - DCCpower qualitytotal harmonic distortion - THD.
collection DOAJ
language English
format Article
sources DOAJ
author Huynh Le Minh Thien
Nguyen Xuan Tien
Tran Thanh Vu
Ho Van Cuu
spellingShingle Huynh Le Minh Thien
Nguyen Xuan Tien
Tran Thanh Vu
Ho Van Cuu
IMPROVED THE ADAPTATION FOR THREE PHASE ACTIVE FILTER UNDER NON-IDEAL-LOAD USING SAMPLE CURRENT CONTROL
Journal of Mechanical Engineering Research and Developments
Active power filter
sample current control - SCC
direct current control - DCC
power quality
total harmonic distortion - THD.
author_facet Huynh Le Minh Thien
Nguyen Xuan Tien
Tran Thanh Vu
Ho Van Cuu
author_sort Huynh Le Minh Thien
title IMPROVED THE ADAPTATION FOR THREE PHASE ACTIVE FILTER UNDER NON-IDEAL-LOAD USING SAMPLE CURRENT CONTROL
title_short IMPROVED THE ADAPTATION FOR THREE PHASE ACTIVE FILTER UNDER NON-IDEAL-LOAD USING SAMPLE CURRENT CONTROL
title_full IMPROVED THE ADAPTATION FOR THREE PHASE ACTIVE FILTER UNDER NON-IDEAL-LOAD USING SAMPLE CURRENT CONTROL
title_fullStr IMPROVED THE ADAPTATION FOR THREE PHASE ACTIVE FILTER UNDER NON-IDEAL-LOAD USING SAMPLE CURRENT CONTROL
title_full_unstemmed IMPROVED THE ADAPTATION FOR THREE PHASE ACTIVE FILTER UNDER NON-IDEAL-LOAD USING SAMPLE CURRENT CONTROL
title_sort improved the adaptation for three phase active filter under non-ideal-load using sample current control
publisher Zibeline International
series Journal of Mechanical Engineering Research and Developments
issn 1024-1752
publishDate 2019-04-01
description In this paper, a comparison between sample current control and direct current control to show the efficiency of the two current control method of Active Power Filter. The main function of the scheme was a duty by the two-level three phases inverter. According to the classic approach, transistors are converted depending on the sign of the current error, in turn, sampled at equal intervals. Both methods follow the synchronous toggle principle. In the first method, the current vector at the end of the interval is predicted for two possible cases when the operating voltage vector towards the current fault or zero voltage vector is applied. An error generates a smaller current error at the end of the selected sampling period, thus reducing the switching frequency. In the second method, the most appropriate operating voltage vector will succeed in zero vectors over the same period. A simple algorithm is used to calculate the duty cycle to achieve the smallest possible error. Both methods are simulated with three different load modes: no load, RL load, and nonlinear load. At the end of the article, the behavior of the second method, SCC, is worth more. The simulation results demonstrate the viability and effectiveness of the two technique of current control in reducing the ripple, losses, and Total Harmonic Distortion of supply current.
topic Active power filter
sample current control - SCC
direct current control - DCC
power quality
total harmonic distortion - THD.
url https://jmerd.org.my/Paper/Vol.42,No.3(2019)/76-80.pdf
work_keys_str_mv AT huynhleminhthien improvedtheadaptationforthreephaseactivefilterundernonidealloadusingsamplecurrentcontrol
AT nguyenxuantien improvedtheadaptationforthreephaseactivefilterundernonidealloadusingsamplecurrentcontrol
AT tranthanhvu improvedtheadaptationforthreephaseactivefilterundernonidealloadusingsamplecurrentcontrol
AT hovancuu improvedtheadaptationforthreephaseactivefilterundernonidealloadusingsamplecurrentcontrol
_version_ 1724829036558942208