DocumentCode :
3220111
Title :
An improved magnetic field simulator - MAGFLD
Author :
Ghosh, T.K. ; Carter, R.G. ; Yadav, Vinay ; Joshi, Yukta ; Gupta, Rishma ; Srivastava, Aakanksha ; Vishwanath, R. ; Joshi, S.N.
Author_Institution :
Central Electron. Eng. Res. Inst., Pilani, India
fYear :
2004
fDate :
27-29 April 2004
Firstpage :
318
Lastpage :
319
Abstract :
An improved two-dimensional simulator MAGFLD has been developed which is useful for the design and simulation of periodic permanent magnet (PPM) focusing system for linear beam tubes. At present, input is possible only through the input file, which is very simple and user friendly. A complete PPM circuit is generated using the coordinates of first pole piece, first magnet, gun adapter (if the structure is a-periodic) and the region of computation. Small mesh units of either square or rectangular shapes can be used with mesh refinement capability in one or more regions in any or both directions for better accuracy of the solution. Materials with different magnetic permeability can be modeled by defining a characteristic value for each mesh point of the geometry. The effective potential value at each point in the region of interest is calculated based on the vector potential model by using the 5-point finite difference method and the solution is achieved by over relaxation technique for faster convergence. This package has an interface with EGUN to model the electron gun and collector under the influence of magnetic field. Versatile color graphics are capable of plotting both axial magnetic field and flux lines along with the magnetic circuit. MAGFLD has been validated against some published data and experimental results.
Keywords :
CAD; convergence of numerical methods; electrical engineering computing; electron beam focusing; electron guns; finite difference methods; mesh generation; permanent magnets; travelling wave tubes; 5-point finite difference method; Ku-band space TWT; MAGFLD simulator; design; effective potential value; faster convergence; fringing field; gun adapter; improved two-dimensional simulator; linear beam tubes; magnetic field simulator; mesh refinement capability; over relaxation technique; periodic permanent magnet focusing system; simulation; vector potential model; Circuit simulation; Geometry; Magnetic circuits; Magnetic fields; Magnetic flux; Magnetic materials; Permanent magnets; Permeability; Shape; Solid modeling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Electronics Conference, 2004. IVEC 2004. Fifth IEEE International
Print_ISBN :
0-7803-8261-7
Type :
conf
DOI :
10.1109/IVELEC.2004.1316339
Filename :
1316339
Link To Document :
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