The discrete time domain Green's function or Johns matrix — A new powerful concept in transmission line modelling (TLM)
- 1 December 1989
- journal article
- research article
- Published by Wiley in International Journal of Numerical Modelling: Electronic Networks, Devices and Fields
- Vol. 2 (4) , 215-225
- https://doi.org/10.1002/jnm.1660020405
Abstract
A new TLM‐based concept analogous to the Green's function approach in classical electromagnetic theory is presented. It employs the procedure known as time domain diakoptics. The response of a TLM mesh to a unit impulse excitation at selected input points is interpreted as a discrete Green's function in the time domain, and the term ‘Johns matrix’ is proposed for this characteristic response. As in classical theory, the response of the mesh to an arbitrary excitation is found by convolving the excitation with its Johns matrix. This concept extends the generalized scattering parameter concept into the time dimension, opens unprecedented possibilities for partioning time domain problems at the field level, and permits large‐scale preprocessing of substructures for computer‐aided design. It also represents and elegant way of modelling broadband absorbing boundary conditions, imperfectly conducting walls and general frequency dispersive boundaries in the time domain.Keywords
This publication has 5 references indexed in Scilit:
- The Transmission-Line Matrix Method--Theory and ApplicationsIEEE Transactions on Microwave Theory and Techniques, 1985
- Time domain approximations in the solution of fields by time domain diakopticsInternational Journal for Numerical Methods in Engineering, 1982
- The use of time domain diakoptics in time discrete models of fieldsInternational Journal for Numerical Methods in Engineering, 1981
- On the construction and numerical solution of transmission-line and lumped network models of Maxwell's equationsInternational Journal for Numerical Methods in Engineering, 1980
- Numerical solution of 2-dimensional scattering problems using a transmission-line matrixProceedings of the Institution of Electrical Engineers, 1971