Title :
Microstrip patch designs that do not excite surface waves
Author :
Jackson, D.R. ; Williams, J.T. ; Bhattacharyya, Arun K. ; Smith, Richard L. ; Buchheit, Stephen J. ; Long, S.A.
Author_Institution :
Dept. of Electr. Eng., Houston Univ., TX, USA
fDate :
8/1/1993 12:00:00 AM
Abstract :
Two variations of a circular microstrip patch design are presented which excite very little surface wave power. Both of the designs are based on the principle that a ring of magnetic current in a substrate (which models the patches) will not excite the dominant TM0 surface wave if the radius of the ring is a particular critical value. Numerical results for radiation efficiency and radiated field strength from a ring of magnetic current are shown to verify this basic design principle. The proposed patch designs are chosen to have a radius equal to this critical value, while maintaining resonance at the design frequency. The designs excite very little surface-wave power, and thus have smoother radiation patterns when mounted on finite-size ground planes, due to reduced surface-wave diffraction. They also have reduced mutual coupling, due to the reduced surface-wave excitation. Measured results for radiation patterns and field strength within the substrate are presented to verify the theoretical concepts
Keywords :
antenna radiation patterns; microstrip antennas; TM0 surface wave; annular ring design; circular microstrip patch design; cored patch design; finite-size ground planes; magnetic current; microstrip antennas; mutual coupling; numerical results; radiated field strength; radiation efficiency; radiation patterns; surface-wave diffraction; Antenna measurements; Antenna radiation patterns; Dielectric substrates; Diffraction; Frequency; Magnetic field measurement; Magnetic resonance; Microstrip antennas; Mutual coupling; Surface waves;
Journal_Title :
Antennas and Propagation, IEEE Transactions on