AUTOR DO BLOG ENG.ARMANDO CAVERO MIRANDA SÃO PAULO BRASIL

"OBRIGADO DEUS PELA VIDA,PELA MINHA FAMILIA,PELO TRABALHO,PELO PÃO DE CADA DIA,PROTEGENOS DO MAL"

"OBRIGADO DEUS PELA VIDA,PELA MINHA FAMILIA,PELO TRABALHO,PELO PÃO DE CADA DIA,PROTEGENOS  DO MAL"

“SE SEUS PROJETOS FOREM PARA UM ANO,SEMEIE O GRÂO.SE FOREM PARA DEZ ANOS,PLANTE UMA ÁRVORE.SE FOREM PARA CEM ANOS,EDUQUE O POVO.”

“Sixty years ago I knew everything; now I know nothing; education is a progressive discovery of our own ignorance. Will Durant”

https://picasion.com/
https://picasion.com/

domingo, 16 de janeiro de 2011

Current Programmed Control of Three Phase PWM AC-AC Converter


Current Programmed Control of Three Phase PWM AC-AC Converter
Advisor: Nam-Sup Choi
Presented as Thesis for the Degree of Master of Electrical Engineering
by Yulong Li
Department of Electrical Engineering Graduate School
Yosu National University February 2006

FULL PAPER:http://www.4shared.com/document/nZeBEVQW/AC-AC-TRIF.html






Design and Implementation of a Novel Three-Phase for Automatic Voltage Regulator



Design and Implementation of a Novel Three-Phase for Automatic Voltage Regulator
National Central University Electrical Engineering Research Institute
Master thesis
Graduate Student: Yang Zongsong
Advisor: Dr. Xu Guokai
2005
Three-phase ac voltage regulator is capable of providing regulated power source, and one of the important issues of it is to stabilize the power quality. In this paper, a novel switching strategy called phase-shift pulse width modulation is applied to the three-phase four-wire ac voltage regulator(AVR)which utilizes a YY connection for the purpose of enhancing output power rating. The system is made up of three ac choppers with reversible voltage, AVR motherboards and transformers for series voltage compensation. The switching strategy is to match up the components of the system as mentioned above such that the compensation voltage with the same or opposite polarity for the input utility voltage can be simply obtained by controlling the duty cycle of power devices. Consequently, variations of the output voltage would be compensated or restrained. The fast sensing technique is adopted toward output voltage and the control law is implemented through the fixed-point digital signal microcontroller(DSM)(dsPIC30F2010). The system is able to improve reliability, response, efficiency, power factor and reduce cost. It is shown via the experimental results that the system achieves the expected goal of fast voltage regulation.

FULL THESIS HERE:http://thesis.lib.ncu.edu.tw/ETD-db/ETD-search/getfile?URN=92521090&filename=92521090.pdf

4SHARED
http://www.4shared.com/document/76_xV_50/92521090.html