Title :
High performance gradient driver for magnetic resonance imaging system
Author :
Lai, Rixin ; Sabate, Juan ; Chi, Song ; Skeffington, Wesley
Author_Institution :
GE Global Res. Center, One Res. Circle, Niskayuna, NY, USA
Abstract :
In high performance magnetic resonance imaging (MRI) systems, the gradient driver is required to supply the gradient coil with large amplitude (>;600A) and high slew rate (>;2A/μs) current waveform. In addition, extremely high fidelity for reproducing the current command from the central system is very critical for imaging quality. This paper presents an improved gradient driver structure and a new modulation scheme, with which the switching frequency will vary according to the slew rate of the current command. The corresponding output filter design is also introduced. With the proposed technique the switching loss can be reduced and evenly distributed in all the bridges, therefore the utilization ratio of the semiconductor devices is improved and the number of devices in parallel can be reduced. A 2 MVA platform has been built and fully tested. The experimental results proved the validity of the proposed structure and modulation technique.
Keywords :
driver circuits; magnetic resonance imaging; power supplies to apparatus; apparent power 2 MVA; central system; current command; current waveform; gradient coil; gradient driver structure; high performance gradient driver; imaging quality; magnetic resonance imaging system; modulation scheme; output filter design; semiconductor devices; slew rate; switching frequency; switching loss; utilization ratio; Bridge circuits; Coils; Magnetic resonance imaging; Modulation; Power harmonic filters; Switches; Switching frequency; Gradient driver; modulation scheme; switching frequency; switching loss;
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2011 IEEE
Conference_Location :
Phoenix, AZ
Print_ISBN :
978-1-4577-0542-7
DOI :
10.1109/ECCE.2011.6064243