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/

terça-feira, 29 de agosto de 2017

Elimination of the Inrush Current Phenomenon Associated with Single-Phase Offline UPS Systems Syed Sabir Hussain Bukhari, Shahid Atiq and Byung-il Kwon * Department of Electronic Systems Engineering, Hanyang University ERICA, South Korea


Elimination of the Inrush Current Phenomenon Associated with Single-Phase Offline UPS Systems Syed Sabir Hussain Bukhari, Shahid Atiq and Byung-il Kwon * Department of Electronic Systems Engineering, Hanyang University ERICA, Ansan 426-791, Korea 

 Abstract: Critical load applications always rely on UPS systems to uphold continuous power during abnormal grid conditions. In case of any power disruption, an offline UPS system starts powering the load to avoid blackout. However, this process can root the momentous inrush current for the transformer installed before the load. The consequences of inrush current can be the reduction of output voltage and tripping of protective devices of the UPS system. Furthermore, it can also damage the sensitive load and decrease the transformer’s lifetime. To prevent the inrush current, and to avoid its disruptive effects, this research suggests an offline UPS system based on a current regulated inverter that eliminates the inrush current while powering the transformer coupled loads. A detailed comparative analysis of the conventional and proposed topologies is presented and the experiment was performed by using a small prototype to validate the performance, and operation of the proposed topology. Keywords: uninterruptible power supply; offline; inrush currents; current regulation

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https://pdfs.semanticscholar.org/0374/8dcd3f5ed69daf4128b971797417dcb92cde.pdf

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