Impedance Boundary Conditions In Electromagnetics. (1995)
- Record Type:
- Book
- Title:
- Impedance Boundary Conditions In Electromagnetics. (1995)
- Main Title:
- Impedance Boundary Conditions In Electromagnetics
- Further Information:
- Note: Daniel J. Hoppe.
- Authors:
- Hoppe, Daniel J
- Contents:
- Cover; Half Title; Title Page; Copyright Page; Table of Contents; Preface; Nomenclature; Abbreviations; 1: Introduction; 1.1 Background; 1.2 Scattering by Conducting Bodies; 1.3 Scattering by Coated Conducting Bodies; 1.4 Approximate Boundary Conditions; 1.5 ABitofHistory; 1.6 Organization of This Book; 2: Spectral Domain Theory of Higher Order Impedance Boundary Conditions; 2.1 Step 1: Exact Spectral Domain Boundary Conditions; 2.2 Step 2: Polynomial Approximations; 2.3 Step 3: Coefficient Determination; 2.4 Step 4: Construction of the Spatial Domain Equations; 2.5 Special Cases; 2.5.1 TIBC 2.5.2 SIBC2.5.3 GIBC; 2.6 Conclusions; 3: Planar Higher Order Impedance Boundary Conditions; 3.1 Planar Dielectric Coatings; 3.1.1 Exact Spectral Domain Boundary Conditions; 3.1.2 Higher Order Impedance Boundary Conditions; 3.1.3 Examples; 3.2 Corrugated Conductors; 3.3 Planar Chiral Coatings; 3.3.1 Exact Spectral Domain Boundary Conditions; 3.3.2 Higher Order Impedance Boundary Conditions; 3.3.3 Examples; 3.4 Conclusions; 4: Boundary Conditions for Curved Dielectric and Chiral Coatings; 4.1 Scattering by Dielectric Coated Circular Cylinders using Planar HOIBC 4.2 Higher Order Impedance Boundary Conditions for Curved Coatings4.2.1 Exact Spectral Domain Boundary Conditions; 4.2.2 Higher Order Impedance Boundary Conditions; 4.2.3 Examples; 4.3 Conclusions; 5: Scattering by a Dielectric-Filled Groove in a Ground Plane; 5.1 Higher Order Impedance Boundary Condition Solution; 5.1.1 ExteriorCover; Half Title; Title Page; Copyright Page; Table of Contents; Preface; Nomenclature; Abbreviations; 1: Introduction; 1.1 Background; 1.2 Scattering by Conducting Bodies; 1.3 Scattering by Coated Conducting Bodies; 1.4 Approximate Boundary Conditions; 1.5 ABitofHistory; 1.6 Organization of This Book; 2: Spectral Domain Theory of Higher Order Impedance Boundary Conditions; 2.1 Step 1: Exact Spectral Domain Boundary Conditions; 2.2 Step 2: Polynomial Approximations; 2.3 Step 3: Coefficient Determination; 2.4 Step 4: Construction of the Spatial Domain Equations; 2.5 Special Cases; 2.5.1 TIBC 2.5.2 SIBC2.5.3 GIBC; 2.6 Conclusions; 3: Planar Higher Order Impedance Boundary Conditions; 3.1 Planar Dielectric Coatings; 3.1.1 Exact Spectral Domain Boundary Conditions; 3.1.2 Higher Order Impedance Boundary Conditions; 3.1.3 Examples; 3.2 Corrugated Conductors; 3.3 Planar Chiral Coatings; 3.3.1 Exact Spectral Domain Boundary Conditions; 3.3.2 Higher Order Impedance Boundary Conditions; 3.3.3 Examples; 3.4 Conclusions; 4: Boundary Conditions for Curved Dielectric and Chiral Coatings; 4.1 Scattering by Dielectric Coated Circular Cylinders using Planar HOIBC 4.2 Higher Order Impedance Boundary Conditions for Curved Coatings4.2.1 Exact Spectral Domain Boundary Conditions; 4.2.2 Higher Order Impedance Boundary Conditions; 4.2.3 Examples; 4.3 Conclusions; 5: Scattering by a Dielectric-Filled Groove in a Ground Plane; 5.1 Higher Order Impedance Boundary Condition Solution; 5.1.1 Exterior Region; 5.1.2 Interior Region; 5.1.3 Edge Conditions; 5.2 Exact Formulation: A Mode Matching Approach; 5.3 Examples; 5.3.1 Rectangular Grooves; 5.3.2 Rectangular Groove: Lossy Dielectric; 5.3.3 Asymmetric Groove; 5.3.4 Tapered Groove: Two-Layer Dielectric 5.4 Conclusions6: Scattering by Two-Dimensional Dielectric-Coated Cylinders; 6.1 HOIBC Solution of the Scattering Problem; 6.1.1 Exterior Problem; 6.1.2 Interior Problem; 6.1.3 Method of Moments Solution; 6.2 Exact Solution; 6.3 Superquadric Cylinders; 6.4 Examples; 6.4.1 Impedance Approximation; 6.4.2 Circular Cylinder: Bistatic RCS; 6.4.3 Superquadric Cylinders: Bistatic RCS; 6.4.4 Superquadric Cylinders: Monostatic RCS; 6.4.5 Superquadric Cylinder: Magnetic Coating; 6.5 Conclusions; 7: Scattering by Dielectric-Coated Bodies of Revolution; 7.1 Problem Geometry 7.2 Fourier Series Decomposition7.3 Exact Solution; 7.4 HOIBC Solution; 7.4.1 Exterior Region; 7.4.2 Interior Region; 7.5 Examples; 7.5.1 Coated Sphere: Validation; 7.5.2 Superquadric Cylinders: Curvature Effects; 7.5.3 Spheroid: Monostatic RCS; 7.5.4 Superquadric Cylinder: Magnetic Coating; 7.6 Conclusions; Appendixes; A Properties of Exact Impedance Tensors; A.1 Impedance Matrices for Lossless Boundaries; A.2 Impedance Matrices for Reciprocal Boundaries; B Symmetry Properties of the Polynomials P1 -- P8; C Surface Waves on Impedance Surfaces; D Plane Wave Scattering at an Impedance Plane … (more)
- Publisher Details:
- Boca Raton, FL : CRC Press
- Publication Date:
- 1995
- Extent:
- 1 online resource
- Subjects:
- 539.2
Electromagnetism
Microwaves
Electromagnetism
Microwaves
Electronic books - Languages:
- English
- ISBNs:
- 9781482227840
1482227843 - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
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- British Library HMNTS - ELD.DS.282789
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