DocumentCode :
2236192
Title :
Capability assessment of high-performance control schemes for PWM voltage-source rectifiers fed from weak power systems
Author :
Burgos, R.P. ; Wiechmann, E.P. ; Espinoza, J.R.
Author_Institution :
Univ. of Concepcion, Chile
fYear :
2002
fDate :
4-7 June 2002
Firstpage :
80
Lastpage :
85
Abstract :
It is a known fact that waning power systems worldwide are being supported using distributed power generation. This type of generation however adversely affects the end-users´ power quality by increasing voltage and frequency disturbances. This paper presents a capability assessment of high-performance control schemes for PWM voltage source rectifiers operating under these conditions. The strategies considered are: a cascaded current/voltage scheme with PI controllers and a decoupling feedforward term, a cascaded nonlinear control scheme, and a paralleled current/voltage nonlinear control scheme. The analysis employs α-β stationary frame modeling and sequence decomposition theory. The strategies were implemented and experimentally tested using a TMS320C32 DSP based system. The evaluation considered industry standard disturbances, namely sags, swells, and frequency fluctuations. Results obtained showed that the paralleled nonlinear scheme presents the best performance.
Keywords :
PWM power convertors; digital control; digital signal processing chips; electric current control; electric power generation; feedforward; nonlinear control systems; power supply quality; rectifying circuits; two-term control; voltage control; α-β stationary frame modeling; PI controllers; PWM voltage-source rectifiers; TMS320C32 DSP; capability assessment; cascaded current/voltage scheme; cascaded nonlinear control; decoupling feedforward term; distributed power generation; end-user power quality; frequency disturbances; frequency fluctuations; high-performance control schemes; industry standard disturbances; paralleled current/voltage nonlinear control; sequence decomposition theory; voltage disturbances; voltage sags; voltage swells; waning power systems; weak power systems;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Power Electronics, Machines and Drives, 2002. International Conference on (Conf. Publ. No. 487)
ISSN :
0537-9989
Print_ISBN :
0-85296-747-0
Type :
conf
DOI :
10.1049/cp:20020093
Filename :
1031669
Link To Document :
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