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Christophe Bourlier

Method of Moments for 2D Scattering Problems

Basic Concepts and Applications

Ebook (PDF Format)

Electromagnetic wave scattering from randomly rough surfaces in the presence of scatterers is an active, interdisciplinary area of research with myriad practical applications in fields such as optics, acoustics, geoscience and remote sensing. In this book, the Method of Moments (MoM) is applied to compute the field scattered by scatterers such as canonical objects (cylinder or plate) or a randomly rough surface, and also by an object above or below a random rough surface. Since the problem is considered to be 2D, the integral equations (IEs) are scalar and only the TE (transverse electric) and TM (transverse magnetic) polarizations are addres… Mehr

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Produktdetails


Weitere Autoren: Pinel, Nicolas / Kubicke, Gildas
  • ISBN: 978-1-118-64869-8
  • EAN: 9781118648698
  • Produktnummer: 16368222
  • Verlag: John Wiley & Sons
  • Sprache: Englisch
  • Erscheinungsjahr: 2013
  • Seitenangabe: 160 S.
  • Plattform: PDF
  • Masse: 6'647 KB
  • Auflage: 1. Auflage

Über den Autor


Christophe Bourlier works at the IETR (Institut d'Electronique et de Télécommunications de Rennes) laboratory at Polytech Nantes (University of Nantes, France) as well as being a Researcher at the French National Center for Scientific Research (CNRS) on electromagnetic wave scattering from rough surfaces and objects for remote sensing applications and radar signatures. He is the author of more than 160 journal articles and conferences papers. Nicolas Pinel is currently working as a Research Engineer at the IETR laboratory at Polytech Nantes and is about to join Alyotech Technologies in Rennes, France. His research interests are in the areas of radar and optical remote sensing, scattering and propagation. In particular, he works on asymptotic methods of electromagnetic wave scattering from random rough surfaces and layers. Gildas Kubické is in charge of the Expertise in electroMagnetism and Computation (EMC) laboratory at the DGA (Direction Générale de l'Armement), French Ministry of Defense, where he works in the field of radar signatures and electromagnetic stealth. His research interests include electromagnetic scattering and radar cross-section modeling.

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