Title :
Theoretical Framework for Minimizing Converter Losses and Harmonics in a Multilevel STATCOM
Author :
Sternberger, Ronny ; Jovcic, Dragan
Author_Institution :
Eng. Dept., Univ. of Aberdeen, Aberdeen
Abstract :
In this paper, an analytical framework for minimizing losses and harmonics is presented for the cascaded-type-based multilevel static synchronous compensator (STATCOM) with ldquosquare-wave control.rdquo The focus lays on low losses, low-voltage total harmonic distortion (THD), and low dc voltage ripple. All of the system parameters are studied, including buffer reactance, dc capacitance, transformer ratio, and transformer leakage inductance. The equivalent capacitance concept is used to represent the complex structure of the multilevel converter. It enables studies of the internal STATCOM resonances which have a significant influence on triplen harmonics and losses. The interactions between system parameter are investigated and analytical formulae for optimal parameters are derived. Detailed PSCAD digital simulations are used to confirm the analytical formulae. The summarized design steps are offered that are recommended to obtain optimum STATCOM system parameters.
Keywords :
harmonic distortion; power convertors; power system harmonics; static VAr compensators; PSCAD digital simulations; buffer reactance; cascaded-type-based multilevel static synchronous compensator; converter harmonics; converter losses; dc capacitance; dc voltage ripple; equivalent capacitance concept; internal STATCOM resonances; multilevel STATCOM; multilevel converter; square-wave control; static VAR compensator; system parameters; total harmonic distortion; transformer leakage inductance; transformer ratio; Harmonic distortion; multilevel converter; resonances; static VAR compensators; static synchronous compensator (STATCOM);
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2008.923069