DocumentCode
23201
Title
Control scheme for cascaded H-bridge converter-based distribution network static compensator
Author
Marzoughi, Alinaghi ; Neyshabouri, Yousef ; Imaneini, Hossein
Author_Institution
Sch. of Electr. & Comput. Eng., Univ. of Tehran, Tehran, Iran
Volume
7
Issue
11
fYear
2014
fDate
11 2014
Firstpage
2837
Lastpage
2845
Abstract
In this study, a new control scheme is proposed for cascaded H-bridge (CHB)-based static compensator (STATCOM). The new indirect current control method does not require any current sensors, so the total system has enhanced reliability. Using the proposed control approach, dc-link voltages across dc-link capacitors are regulated to the reference value, even if the H-bridge cells dissipate different amounts of losses. However, regardless of the active power distribution, the reactive power is equally shared between the cells. The proposed scheme is investigated on distribution network STATCOM, but is not restricted to that and can be applied to STATCOMs at any voltage and power level. Multicarrier phase-shifted sinusoidal pulse-width modulation is used for modulation purpose, since it is naturally the best option for CHB converter. In this way, low-order harmonics are eliminated from the line side current and the current THD is below 5%, which satisfies IEEE-519 standard. To verify the feasibility of the control strategy, simulations as well as experimental implementations are carried out on a CHB converter having three cells in each phase.
Keywords
PWM power convertors; bridge circuits; cascade systems; electric current control; power capacitors; power distribution control; power distribution reliability; static VAr compensators; voltage control; CHB-based STATCOM; H-bridge cells; IEEE-519 standard; active power distribution; cascaded H-bridge converter-based distribution network static compensator; dc-link capacitors; dc-link voltage regulation; indirect current control; low-order harmonics elimination; multicarrier phase-shifted sinusoidal pulse-width modulation; reference value;
fLanguage
English
Journal_Title
Power Electronics, IET
Publisher
iet
ISSN
1755-4535
Type
jour
DOI
10.1049/iet-pel.2013.0663
Filename
6942353
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