This article is a historical review of the introduction, development, and advancement of antenna technology, starting with the spark-gap transmission and reception by Hertz in the late 1880s. The article underscores some of the basic antenna designs that contributed to the evolution of antenna technology, especially linear dipoles and loops, which were part of Hertz’s 1886 spark-gap dipole transmitter and loop receiver experiment, and also describes some of their basic radiation characteristics.
Abstract:
This article is a historical review of the introduction, development, and advancement of antenna technology, starting with the spark-gap transmission and reception by Her...Show MoreMetadata
Abstract:
This article is a historical review of the introduction, development, and advancement of antenna technology, starting with the spark-gap transmission and reception by Hertz in the late 1880s. The article underscores some of the basic antenna designs that contributed to the evolution of antenna technology, especially linear dipoles and loops, which were part of Hertz’s 1886 spark-gap dipole transmitter and loop receiver experiment, and also describes some of their basic radiation characteristics.
Published in: IEEE Antennas and Propagation Magazine ( Volume: 66, Issue: 3, June 2024)
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1.
C. A. Balanis, Antenna Theory: Analysis and Design, Hoboken, NJ, USA:Wiley, 2016.
2.
C. A. Balanis, "Antenna theory: A review", Proc. IEEE, vol. 80, no. 1, pp. 7-23, Jan. 1992.
3.
J. D. Kraus, "Antennas since Hertz and Marconi", IEEE Trans. Antennas Propag., vol. 33, no. 2, pp. 131-137, Feb. 1985.
4.
J. C. Maxwell, A Treatise on Electricity and Magnetism, London, U.K.:Oxford Univ. Press, 1873.
5.
"Microwave Antenna Theory and Design" in MIT Radiation Laboratory Series, New York, NY, USA:McGraw-Hill, vol. 12, 1949.
6.
S. Stutzman, "Bibliography for antennas", IEEE Antennas Propag. Mag., vol. 32, no. 4, pp. 54-57, Aug. 1990.
7.
J. D. Kraus, Antennas, New York, NY, USA:McGraw-Hill, 1988.
8.
S. A. Schelkunoff and H. T. Friis, Antenna Theory and Practice, New York, NY, USA:Wiley, 1952.
9.
L. V. Blake, Antennas, New York, NY, USA:Wiley, 1966.
10.
J. Aharoni, Antennae, London, U.K.:Oxford Univ. Press, 1946.
11.
S. A. Schelkunoff, Advanced Antenna Theory, New York, NY, USA:Wiley, 1952.
12.
E. A. Laport, Radio Antenna Engineering, New York, NY, USA:McGraw-Hill, 1952.
13.
C. H. Walter, Traveling Wave Antennas, New York, NY, USA:McGraw-Hill, 1968.
14.
E. Wolff, Antenna Analysis, Norwood, MA, USA:Artech House, 1988.
15.
W. L. Weeks, Antenna Engineering, New York, NY, USA:McGraw-Hill, 1968.
16.
E. Jordan and K. Balmain, Electromagnetic Waves and Radiating Systems, New York, NY, USA:Prentice-Hall, 1968.
17.
Antenna Theory Parts 1 and 2, New York, NY, USA:McGraw-Hill, 1969.
18.
W. V. T. Rusch and P. D. Potter, Analysis of Reflector Antennas, New York, NY, USA:Academic Press, 1970.
19.
W. L. Stutzman and G. A. Thiele, Antenna Theory and Design, New York, NY, USA:Wiley, 1998.
20.
R. S. Elliot, Antenna Theory and Design, New York, NY, USA:Prentice-Hall, 1981.
21.
K. F. Lee, Principles of Antenna Theory, New York, NY, USA:Wiley, 1984.
22.
R. E. Collin, Antennas and Radiowave Propagation, New York, NY, USA:McGraw-Hill, 1985.
23.
T. A. Milligan, Modern Antenna Design, New York, NY, USA:McGraw-Hill, 1985.
24.
J. R. Wait, Introduction to Antennas and Propagation, Hitchin, U.K.:IEE, 1966.
25.
F. R. Connor, Antennas, London, U.K.:Edward Arnold, 1989.
26.
Handbook of Microwave and Optical Components, New York, NY, USA:Wiley-Interscience, vol. I, 1989.
27.
Antenna Engineering Handbook, New York, NY, USA:McGraw-Hill, 2007.
28.
Microwave Scanning Antennas, New York, NY, USA:Academic Press, vol. I–III, 1964.
29.
The Handbook of Antenna Design, London, U.K.:Peter Peregrinus, vol. 1, 1982.
30.
Antenna Handbook: Theory Applications and Design, New York, NY, USA:Springer-Verlag, 1988.