University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of...

54
University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering www.ece.utah.edu/~psai 1
  • date post

    21-Dec-2015
  • Category

    Documents

  • view

    215
  • download

    0

Transcript of University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of...

Page 1: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

University of UtahAdvanced Electromagnetics

Image Theory

• Dr. Sai Ananthanarayanan• University of Utah

• Department of Electrical and Computer Engineering• www.ece.utah.edu/~psai

1

Page 2: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

2

Volume Equivalence

o Used to determine scattered fields when a material obstacle is introduced in the free space environment where the fields E0 and H0

o These fields must satisfy Maxwell’s equation:

Page 3: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

3

Volume Equivalence

Subtracting the two equations we get:

Page 4: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

4

Page 5: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

5

The electric and magnetic fields scattered by a material obstacle can be Generated by using equivalent electric Jeq and Meq magnetic volume currentDensities.

Volume equivalent current densities are most useful for finding the electricAnd magnetic fields scattered by a dielectric object

Page 6: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

6

Surface Equivalence

o Actual sources are replaced by equivalent sourceso These fictitious sources are said to be equivalent within a region because they produce within that region the same fields as the actual sourceso This principle was formulated by Schelkunoff and is a more rigorous formulation of Huygens’s principle:“ Each Point on a primary wavefront can be considered to be a new source of a secondary spherical wave and that a secondary wavefront can be considered as the envelop of these secondary spherical waves”

Page 7: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

7

Surface Equivalence

“ A field in a lossy region is uniquely specified by the sources within the regionplus the tangential components of the electric field over the boundary, or thetangential components of the magnetic fields over the boundary, or the formerOver part of the boundary and the latter over the rest of the boundary ”

The fields in a lossless medium are considered to be the limit, as the losses goTo zero., of the corresponding fields in lossy media.

If the tangential electric and magnetic field are known over a closed surface, the fields in the source-free region can be determined.

Page 8: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

8

The degree of accuracy depends on the knowledge of the tangential components of the field over the closed surface

Page 9: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

9

Page 10: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

10

Page 11: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

11

Special case: Love’e equivalence principle

Page 12: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 13: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 14: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 15: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 16: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 17: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

Summary

17

Page 18: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 19: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 20: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 21: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 22: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 23: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 24: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 25: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 26: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 27: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 28: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 29: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 30: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 31: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 32: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 33: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 34: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 35: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 36: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 37: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 38: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 39: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 40: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 41: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 42: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 43: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 44: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 45: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 46: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 47: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 48: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 49: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 50: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 51: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 52: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 53: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.
Page 54: University of Utah Advanced Electromagnetics Image Theory Dr. Sai Ananthanarayanan University of Utah Department of Electrical and Computer Engineering.

54