A General High-Order Finite-Element Analysis Program Waveguide
A very general computer program for determining sets of propagating modes and cutoff frequencies of arbitrarily shaped waveguides is described. The program uses a new method of analysis based on approximate extremization of a functional whose Euler equation is the scalar Helmholtz equation, subject...
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| Published in | IEEE transactions on microwave theory and techniques Vol. 17; no. 4; pp. 204 - 210 |
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| Main Author | |
| Format | Journal Article |
| Language | English |
| Published |
IEEE
01.04.1969
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0018-9480 |
| DOI | 10.1109/TMTT.1969.1126932 |
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| Abstract | A very general computer program for determining sets of propagating modes and cutoff frequencies of arbitrarily shaped waveguides is described. The program uses a new method of analysis based on approximate extremization of a functional whose Euler equation is the scalar Helmholtz equation, subject to homogeneous boundary conditions. Subdividing the guide cross section into triangular regions and assuming the solution to be representable by a polynomial in each region, the variational problem is approximated by a matrix eigenvalue problem, which is solved by Householder tridiagonalization and Sturm sequences. For reasonably simple convex polygonal guide shapes, the dominant eigenfrequencies are obtained to 5-6 significant figures; for nonconvex or complicated shapes, the accuracy may fall to 3 significant figures. Use of the program is illustrated by calculating the propagating modes of a class of degenerate mode guides of current interest, for which experimental data are available. Numerical studies of convergence rate and discretization error are also described. It is believed that the new program produces waveguide analyses of higher accuracy than any general program previously available. |
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| AbstractList | A very general computer program for determining sets of propagating modes and cutoff frequencies of arbitrarily shaped waveguides is described. The program uses a new method of analysis based on approximate extremization of a functional whose Euler equation is the scalar Helmholtz equation, subject to homogeneous boundary conditions. Subdividing the guide cross section into triangular regions and assuming the solution to be representable by a polynomial in each region, the variational problem is approximated by a matrix eigenvalue problem, which is solved by Householder tridiagonalization and Sturm sequences. For reasonably simple convex polygonal guide shapes, the dominant eigenfrequencies are obtained to 5-6 significant figures; for nonconvex or complicated shapes, the accuracy may fall to 3 significant figures. Use of the program is illustrated by calculating the propagating modes of a class of degenerate mode guides of current interest, for which experimental data are available. Numerical studies of convergence rate and discretization error are also described. It is believed that the new program produces waveguide analyses of higher accuracy than any general program previously available. |
| Author | Silvester, P. |
| Author_xml | – sequence: 1 givenname: P. surname: Silvester fullname: Silvester, P. |
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| Cites_doi | 10.1109/TMTT.1968.1126675 10.1049/piee.1966.0037 10.1017/S0001924000083949 10.1109/TMTT.1968.1126856 10.1016/0020-7225(69)90065-2 10.1109/PROC.1963.2610 10.1016/0020-7225(67)90034-1 10.1109/TMTT.1968.1126672 |
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| References | ref13 ref12 bulley (ref9) 1968 wilkinson (ref15) 1965 meinke (ref5) 1963; 51 ref16 motz (ref2) 1946; 93 bewley (ref14) 1961 ref8 meinke (ref6a) 1966 silvester (ref10) 0 ref4 ref3 skiles (ref7) 0; 10 dunne (ref11) 1968; 72 collin (ref1) 1960 (ref6b) 1968; 7 |
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| SubjectTerms | Band pass filters Boundary conditions Circuit theory Cutoff frequency Eigenvalues and eigenfunctions Equations Finite element methods Microwave filters Microwave theory and techniques Shape |
| Title | A General High-Order Finite-Element Analysis Program Waveguide |
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