READ ME - MoMComputer Program - Moment Method
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c
c This is a FORTRAN Method of Moments program using:
c
c
I.
Pocklington's [equ. (8-24)]
c
II.
Hallen's [equation (8-27)]
c
c integral equations to compute the:
...
Computer Program - Moment Method
c************************************************************
c
c This is a FORTRAN Method of Moments program using:
c
c
I.
Pocklington's [equ. (8-24)]
c
II.
Hallen's [equation (8-27)]
c
c integral equations to compute the:
c
c
A.
Current distribution
c
B.
Input impedance
c
C.
Normalized amplitude radiation pattern
c
c of a linear symmetrically excited dipole.
c
c This program uses pulse expansion for the electric current mode and
c point-matching the electric field at the center of each wire segment;
c delta-gap feed model is used in both formulations.
c In addition, magnetic-frill generator is available in the Pocklington's
c integral equation.
c
c
Option I.
Pocklington's integral equation
c
Option II.
Hallen's integral equation
c
c
**Input parameters:
c
1.
TL
=
total length of the dipole (in wavelengths)
c
2.
a
=
radius of the wire (in wavelengths)
c
3.
NM
=
total number of subsections (must be an odd integer)
c
4.
IEX
=
option to use either magnetic-frill
c
generator or delta-gap feed
c
IEX
=
1: magnetic-frill generator
c
IEC
=
2: delta-gap feed
c
c
**Note:
c
Ignore input parameter IEX when choosing Option II
c
(i.e., Hallen's formulation)
c
c************************************************************
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