Investigation In To The Performance Of Multi-Pulse AC-DC Converters: A Practical Approach to Investigate The Converter Performance against IEEE-519 Standards - Couverture souple

Kumar, Sanjiv

 
9783659248955: Investigation In To The Performance Of Multi-Pulse AC-DC Converters: A Practical Approach to Investigate The Converter Performance against IEEE-519 Standards

Synopsis

In this book a 24-Pulse Buck-Boost AC/DC Converter is discussed. The objective of presented book is to simulate 24-pulse buck-boost AC/DC converter in MATLAB, and to validate experimentally the voltage regulation and power quality of the converter from utility side. In the proposed scheme, phase shifted transformer is used in which secondary (that supply the power cells i.e. cascade single phase VSI modules in each phase of the A.C. motor) are wound to obtain small phase angle between them. The phase angle differs by multiples of 20 degree for 2.4 KV drives; multiples of 15 degree for 3.3 KV drives & by multiples of 12 degree for 4.6 KV drive. They cancel most of the harmonic currents drawn by individual power cell so that primary current are nearly sinusoidal & confirm to or approaches to IEEE power quality standards 519 -1992. The proposed scheme also take care of unbalancing in secondaries winding voltage of phase shifted transformer or fluctuation in supply voltage. Developed converter maintains constant DC voltage of all the modules for entire range of supply voltage.

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Présentation de l'éditeur

In this book a 24-Pulse Buck-Boost AC/DC Converter is discussed. The objective of presented book is to simulate 24-pulse buck-boost AC/DC converter in MATLAB, and to validate experimentally the voltage regulation and power quality of the converter from utility side. In the proposed scheme, phase shifted transformer is used in which secondary (that supply the power cells i.e. cascade single phase VSI modules in each phase of the A.C. motor) are wound to obtain small phase angle between them. The phase angle differs by multiples of 20 degree for 2.4 KV drives; multiples of 15 degree for 3.3 KV drives & by multiples of 12 degree for 4.6 KV drive. They cancel most of the harmonic currents drawn by individual power cell so that primary current are nearly sinusoidal & confirm to or approaches to IEEE power quality standards 519 -1992. The proposed scheme also take care of unbalancing in secondaries winding voltage of phase shifted transformer or fluctuation in supply voltage. Developed converter maintains constant DC voltage of all the modules for entire range of supply voltage.

Biographie de l'auteur

Sanjiv Kumar received his B.E degree in Electrical & Electronics Engineering from Rohilkhand University, Bareilly, India in 2000 and M.Tech.degree in Electrical Engineering from Indian Institute of Technology,Roorkee,India in 2006. He is currently pursuing Ph.D degree in I.I.T.,Roorkee,India and working as Asst.Prof.in EED of H.B.T.I.Kanpur, India.

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