Scattering type classification represents a significant step toward target classification. Both the surface of Poincaré’s sphere and Cameron’s unit disc have been used separately to represent symmetric scattering matrices and to define classifica- tion methods. In this letter, the equivalence of using the surface of Poincaré’s sphere and Cameron’s unit disc in terms of char- acterization and classification of symmetric scattering types is demonstrated mathematically.

Equivalence between Cameron’s Unit Disc and Poincaré’s Sphere for Symmetric Scattering Characterisation and Classification / E., Giusti; Martorella, Marco; Petronio, Carlo; Berizzi, Fabrizio. - In: IEEE GEOSCIENCE AND REMOTE SENSING LETTERS. - ISSN 1545-598X. - 5:(2008), pp. 152-157. [10.1109/LGRS.2008.915739]

Equivalence between Cameron’s Unit Disc and Poincaré’s Sphere for Symmetric Scattering Characterisation and Classification

PETRONIO, CARLO;
2008-01-01

Abstract

Scattering type classification represents a significant step toward target classification. Both the surface of Poincaré’s sphere and Cameron’s unit disc have been used separately to represent symmetric scattering matrices and to define classifica- tion methods. In this letter, the equivalence of using the surface of Poincaré’s sphere and Cameron’s unit disc in terms of char- acterization and classification of symmetric scattering types is demonstrated mathematically.
2008
Equivalence between Cameron’s Unit Disc and Poincaré’s Sphere for Symmetric Scattering Characterisation and Classification / E., Giusti; Martorella, Marco; Petronio, Carlo; Berizzi, Fabrizio. - In: IEEE GEOSCIENCE AND REMOTE SENSING LETTERS. - ISSN 1545-598X. - 5:(2008), pp. 152-157. [10.1109/LGRS.2008.915739]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/3032246
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