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This book describes a novel general entire-domain method for the analysis of metallic antennas and scatterers which enables the solution of a very wide class of problems to be obtained using computers of relatively modest capability.
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This book describes a novel general entire-domain method for the analysis of metallic antennas and scatterers which enables the solution of a very wide class of problems to be obtained using computers of relatively modest capability.
Produktdetails
- Produktdetails
- Verlag: Institution of Engineering & Technology
- Seitenzahl: 208
- Erscheinungstermin: 30. Juni 1994
- Englisch
- Abmessung: 240mm x 161mm x 15mm
- Gewicht: 484g
- ISBN-13: 9780852968079
- ISBN-10: 0852968078
- Artikelnr.: 50908286
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Institution of Engineering & Technology
- Seitenzahl: 208
- Erscheinungstermin: 30. Juni 1994
- Englisch
- Abmessung: 240mm x 161mm x 15mm
- Gewicht: 484g
- ISBN-13: 9780852968079
- ISBN-10: 0852968078
- Artikelnr.: 50908286
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Branko D. Popovic is a Professor of Electrical Engineering at the University of Belgrade and an experienced antenna designer. He is a Fellow of the IEE and a member of the Serbian Academy of Sciences and Arts. He is the author or coauthor of numerous papers on antennas and applied electromagnetics, of several textbooks and of two monographs on the analysis and CAD of wire antennas. He was awarded the Heinrich Hertz Premium of the British IERE (1974), the James Clerk Maxwell Premium of the IEE (1985) and the Yugoslav Nikola Tesla Premium (1985).
* Chapter 1: Introduction
* Chapter 2: Modelling of geometry of metallic antennas and scatterers
* Chapter 3: Approximation of current along generalised wires and over
generalised quadrilaterals
* Chapter 4: Treatment of excitation
* Chapter 5: Electromagnetic field of currents over generalised surface
elements
* Chapter 6: Solution of equations for current distribution
* Chapter 7: Numerical examples illustrating the choice of optimum
elements of the method
* Chapter 8: Numerical examples illustrating possibilities of the
method
* Appendix 1: Evaluation of line integrals of potentials and field
vectors
* Appendix 2: Evaluation of the integrals of potentials and field
vectors due to polynomial distribution of current over bilinear
surfaces
* Chapter 2: Modelling of geometry of metallic antennas and scatterers
* Chapter 3: Approximation of current along generalised wires and over
generalised quadrilaterals
* Chapter 4: Treatment of excitation
* Chapter 5: Electromagnetic field of currents over generalised surface
elements
* Chapter 6: Solution of equations for current distribution
* Chapter 7: Numerical examples illustrating the choice of optimum
elements of the method
* Chapter 8: Numerical examples illustrating possibilities of the
method
* Appendix 1: Evaluation of line integrals of potentials and field
vectors
* Appendix 2: Evaluation of the integrals of potentials and field
vectors due to polynomial distribution of current over bilinear
surfaces
* Chapter 1: Introduction
* Chapter 2: Modelling of geometry of metallic antennas and scatterers
* Chapter 3: Approximation of current along generalised wires and over
generalised quadrilaterals
* Chapter 4: Treatment of excitation
* Chapter 5: Electromagnetic field of currents over generalised surface
elements
* Chapter 6: Solution of equations for current distribution
* Chapter 7: Numerical examples illustrating the choice of optimum
elements of the method
* Chapter 8: Numerical examples illustrating possibilities of the
method
* Appendix 1: Evaluation of line integrals of potentials and field
vectors
* Appendix 2: Evaluation of the integrals of potentials and field
vectors due to polynomial distribution of current over bilinear
surfaces
* Chapter 2: Modelling of geometry of metallic antennas and scatterers
* Chapter 3: Approximation of current along generalised wires and over
generalised quadrilaterals
* Chapter 4: Treatment of excitation
* Chapter 5: Electromagnetic field of currents over generalised surface
elements
* Chapter 6: Solution of equations for current distribution
* Chapter 7: Numerical examples illustrating the choice of optimum
elements of the method
* Chapter 8: Numerical examples illustrating possibilities of the
method
* Appendix 1: Evaluation of line integrals of potentials and field
vectors
* Appendix 2: Evaluation of the integrals of potentials and field
vectors due to polynomial distribution of current over bilinear
surfaces







