Title :
Microwave Corona Breakdown Prediction in Arbitrarily-Shaped Waveguide Based Filters
Author :
Pinheiro-Ortega, Teresa ; Monge, J. ; Marini, S. ; Sanz, J. ; Sorolla, E. ; Mattes, Michael ; Vicente, C. ; Gil, J. ; Boria, V.E. ; Gimeno, Benito
Author_Institution :
Aurora Software & Testing S.L., Valencia, Spain
fDate :
4/1/2010 12:00:00 AM
Abstract :
This letter describes an efficient algorithm to predict the RF gas breakdown power threshold in microwave devices with complex geometries. The two necessary calculations when investigating such a phenomenon have been performed: on the one hand, the computation of the electromagnetic fields inside the structure and, on the other hand, the determination of the breakdown onset itself. The electromagnetic fields are solved by means of modal techniques and coupled to the free electron continuity equation, which is solved by the Finite Element Method. Proceeding in this way, a very simple criterion to find out whether microwave corona breakdown will take place is derived. This numerical implementation of the developed algorithms has been tested with other theoretical approaches and with experimental measurements, showing very good agreement.
Keywords :
corona; finite element analysis; high-frequency discharges; microwave filters; modal analysis; waveguide filters; RF gas breakdown power threshold; arbitrarily-shaped waveguide based filters; electromagnetic simulation; finite element method; free electron continuity equation; microwave corona breakdown prediction; microwave devices; modal techniques; Electromagnetic simulation; gas discharge; high power; microwave breakdown threshold; microwave filters;
Journal_Title :
Microwave and Wireless Components Letters, IEEE
DOI :
10.1109/LMWC.2010.2042555