Ripple cancellation filter for magnetic resonance imaging gradient amplifiers

A ripple cancellation technique used on a magnetic resonance imaging (MRI) gradient switching amplifier eliminates switching frequency ripple of the output voltage and current. A new concept requiring only passive components for ripple cancellation in dc power supplies (M.J. Schutten and R.L. Steige...

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Published inNineteenth Annual IEEE Applied Power Electronics Conference and Exposition, 2004. APEC '04 Vol. 2; pp. 792 - 796 vol.2
Main Authors Sabate, J., Schutten, M., Steigerwald, R., Qiming Li, Wirth, W.F.
Format Conference Proceeding
LanguageEnglish
Published Piscataway NJ IEEE 2004
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Abstract A ripple cancellation technique used on a magnetic resonance imaging (MRI) gradient switching amplifier eliminates switching frequency ripple of the output voltage and current. A new concept requiring only passive components for ripple cancellation in dc power supplies (M.J. Schutten and R.L. Steigerwald, 2003) has been modified for application to an MRI gradient amplifier. The paper presents the circuit changes and the design procedure to accommodate an almost purely inductive load, and arbitrary output waveform of the amplifier. The experimental results show attenuation more than 10/spl times/ greater than what could be achieved with comparable size conventional filtering techniques. The proposed circuit greatly improves the performance of a switched amplifier for gradient coils in MRI systems. The application of this concept is not restricted to gradient amplifiers; it will also directly apply to other type of amplifiers driving inductive loads such as switched audio amplifiers driving a speaker coil.
AbstractList A ripple cancellation technique used on a magnetic resonance imaging (MRI) gradient switching amplifier eliminates switching frequency ripple of the output voltage and current. A new concept requiring only passive components for ripple cancellation in dc power supplies (M.J. Schutten and R.L. Steigerwald, 2003) has been modified for application to an MRI gradient amplifier. The paper presents the circuit changes and the design procedure to accommodate an almost purely inductive load, and arbitrary output waveform of the amplifier. The experimental results show attenuation more than 10/spl times/ greater than what could be achieved with comparable size conventional filtering techniques. The proposed circuit greatly improves the performance of a switched amplifier for gradient coils in MRI systems. The application of this concept is not restricted to gradient amplifiers; it will also directly apply to other type of amplifiers driving inductive loads such as switched audio amplifiers driving a speaker coil.
Author Steigerwald, R.
Qiming Li
Sabate, J.
Wirth, W.F.
Schutten, M.
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Keywords Passive component
Performance evaluation
System design
Power supply
Power electronics
Output signal
Experimental study
Nuclear magnetic resonance imaging
Switching
Acoustic wave amplifier
Output voltage
Magnet coils
Power amplifier
Inductive load
Language English
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PublicationTitle Nineteenth Annual IEEE Applied Power Electronics Conference and Exposition, 2004. APEC '04
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Snippet A ripple cancellation technique used on a magnetic resonance imaging (MRI) gradient switching amplifier eliminates switching frequency ripple of the output...
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Publisher
StartPage 792
SubjectTerms Amplifiers
Applied sciences
Attenuation
Circuit properties
Circuits
Coils
Electric, optical and optoelectronic circuits
Electrical engineering. Electrical power engineering
Electromagnets
Electronic circuits
Electronic equipment and fabrication. Passive components, printed wiring boards, connectics
Electronics
Exact sciences and technology
Filters
Magnetic resonance imaging
Magnetic separation
Magnetic switching
Power electronics, power supplies
Power supplies
Switching frequency
Various equipment and components
Voltage
Title Ripple cancellation filter for magnetic resonance imaging gradient amplifiers
URI https://ieeexplore.ieee.org/document/1295913
Volume 2
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