By Clayton R. Paul
An prepared and concise exposition consolidating all examine within the literature in this subject. information present tools for fixing multiconductor transmission-line equations to figure out voltage and/or currents brought on on the ends of conductors of the road from indications on different conductors or signs from incident assets. contains a disk of FORTRAN codes imposing all the resolution ideas, lots of end-of-chapter difficulties and ratings of computed effects for genuine strains.
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Extra info for Analysis of Multiconductor Transmission Lines (Wiley Series in Microwave & Optical Engineering, 28)
Hayashi, Surges on Trunsmission Systems, Denki-Shoin, Kyoto, Japan, 1955. C. Johnson, Transmission Lines and Networks, McGraw-Hill, NY, 1950. V. , John Wiley, NY, 1951. I. L. Stratonovich, The Propagation of Electromagnetic Waves in Multiconductor Transmission Lines, Macmillan, NY, 1964. C. Magnuson, Transmission Lines and Wave Propagation, Allyn and Bacon, Newton, MA, 1970. E. , IEEE Press, NY, 1991. J. Zaborsky and J. W. Rittenhouse, Electric Power Transmission, Ronald Press, NY, 1954. E. Matick, Transmission Lines for Digital arid Communication Networks, McGraw-Hill, NY, 1969.
6 - a) s A (189) These results again support the notion that the TEM mode will be the only mode of propagation in closed systems so long as the conductor separation is electrically small. 3 fivo-wlre Llnes The two previous transmission-line structures are closed systems. For open systems such as the two-wire line, the issue of higher-order modes is not so clear-cut. 21 showed that the predictions of the transmission-line formulation for the two-wire tine begin to deviate from the complete solution when the cross-sectional dimensions such as wire separation are no longer electrically small.
E. , IEEE Press, NY, 1991. J. Zaborsky and J. W. Rittenhouse, Electric Power Transmission, Ronald Press, NY, 1954. E. Matick, Transmission Lines for Digital arid Communication Networks, McGraw-Hill, NY, 1969. L. ), Parallel Coupled Lines and Directional Couplers, Artech House, Dedham, Massachusetts, 1972. T. ), Planar Transmission Line Structures, IEEE Press, NY, 1987. T. Weeks, “Multiconductor Transmission Line Theory in the TEM Approximation,” IBM J. Research and Development, pp. 604-611, November 1972.
Analysis of Multiconductor Transmission Lines (Wiley Series in Microwave & Optical Engineering, 28) by Clayton R. Paul