Title :
Low stray inductance bus bar design and construction for good EMC performance in power electronic circuits
Author :
Caponet, Marcò Chiado ; Profumo, Francesco ; De Doncker, Rik W. ; Tenconi, Alberto
Author_Institution :
Dipt. di Ingegneria Elettrica Industriale, Politecnico di Torino, Turin, Italy
fDate :
3/1/2002 12:00:00 AM
Abstract :
Ten years after the publication of the EC Directive 89/336 on electromagnetic compatibility, the impact of this directive on design and lay-out of modern electrical and electronic equipment can be observed. Many research and development studies have proposed and evaluated detailed improvements in the area of component design, component selection, circuit lay-out, shielding and active and passive filtering. New and innovative solutions to minimize noise, especially common mode conducted electromagnetic interference (EMI), in power electronic circuits continue to be developed. In this paper, the authors investigate to what extent EMI caused by power electronic devices in hard switching inverter topologies can be minimized using ultra-low inductive planar busbars. The concept followed in this study is to tackle EMI directly at the source where most EMI is generated; in other words, to reduce the parasitic magnetic energy stored in the inverter DC link to reduce high voltage spikes during switching. A planar busbar was built, tested and analyzed. Measurements show the validity of the theoretical, but simple, design procedure for planar busbars in power converters
Keywords :
busbars; electromagnetic compatibility; electromagnetic interference; electromagnetic shielding; inductance; power convertors; switching circuits; EC Directive 89/336; EMC performance; EMI; active filtering; circuit lay-out; component design; component selection; electromagnetic compatibility; electromagnetic interference; hard switching inverter topologies; low stray inductance busbar design; passive filtering; power converter; power electronic circuits; power quality; research and development; shielding; ultra-low inductive planar bus bar; voltage spikes; Active filters; Circuits; Electromagnetic compatibility; Electromagnetic interference; Electronic equipment; Inductance; Inverters; Passive filters; Power electronics; Research and development;
Journal_Title :
Power Electronics, IEEE Transactions on