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Description: Feeding antennas with proper signals can be difficult. The signal is often described as a voltage, and voltages are not well defined in electromagnetic wave formulations. There are several tricks to model voltage generators in such situations, and one is the magnetic frill. This model shows the basic steps of defining a magnetic frill voltage generator for a dipole antenna, and it also compares the resulting antenna impedance with known results.
Platform: |
Size: 5120 |
Author: wyle |
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Description: Feeding antennas with proper signals can be difficult. The signal is often described as a voltage, and voltages are not well defined in electromagnetic wave formulations. There are several tricks to model voltage generators in such situations, and one is the magnetic frill. This model shows the basic steps of defining a magnetic frill voltage generator for a dipole antenna, and it also compares the resulting antenna impedance with known results.
Platform: |
Size: 5120 |
Author: wyle |
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Description: Program computes magnetic frill generator voltage.
Platform: |
Size: 1024 |
Author: Tadas |
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Description: THIS PROGRAM USES PULSE EXPANSION FOR THE ELECTRIC CURRENT MODE
C AND POINT-MATCHING FOR THE ELECTRIC FIELD AT THE CENTER OF EACH
C WIRE SEGMENT.
C
C DELTA-GAP FEED MODEL IS USED IN BOTH FORMULATIONS. IN ADDITION,
C MAGNETIC-FRILL GENERATOR IS AVAILABLE IN THE POCKLINGTON S
C INTEGRAL EQUATION.-THIS PROGRAM USES PULSE EXPANSION FOR THE ELECTRIC CURRENT MODE
C AND POINT-MATCHING FOR THE ELECTRIC FIELD AT THE CENTER OF EACH
C WIRE SEGMENT.
C
C DELTA-GAP FEED MODEL IS USED IN BOTH FORMULATIONS. IN ADDITION,
C MAGNETIC-FRILL GENERATOR IS AVAILABLE IN THE POCKLINGTON S
C INTEGRAL EQUATION.
Platform: |
Size: 8192 |
Author: YALDA |
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