By Y.T. Lo, S.W Lee
Lo Y., Lee S. Antenna instruction manual (Van Nostrand Reinhold, 1993, 2)(ISBN 0442015933)
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Extra resources for Antenna handbook
446-456. S. , 1946, pp. 159-168. T. T. Taylor, "Design of line-source antennas for narrow beamwidth and low side lobe levels," IRE Trans. , vol. AP-3, pp. 16-28, January 1955. R. C. , Microwave Scanning Antennas, Volume I, New York: Academic Press, 1964, pp. 419, 427. T. T. Taylor, "Design of circular apertures for narrow beamwidth and low side lobes," IRE Trans. , vol. AP-8, pp. 17-22, January 1960. R. C. Hansen, "Table of Taylor distributions for circular aperture antennas," IRE Trans. , vol.
Ight, and the maximum receiving cross section are listed for various short dipoles. Note that the half-wave dipole is also included in Table 2 for comparison. 13l 2 (, p. ) This interesting condition exists because the radiation resistance of the antenna decreases with antenna size as rapidly as the square of the induced voltage, so the power available Receiving Antennas 6-13 from the antenna remains constant. In practice the available power cannot be obtained because the antenna and its matching network are generally lossy, and also the high antenna reactance generally limits the bandwidth over which an effective match can be made with a simple network.
Receiving Cross Section, Impedance-Matching Factor, and Polarization-Matching Factor 4. Generalized Friis Transmission Formula 5. Mutual Impedance between Distant Antennas 6. Small Antennas The Short Dipole 6-10 The Small Loop 6-13 7. Ferrite Loop Antennas 8. Bandwidth and Efficiency 9. Noise 10. Satellite TV Earth Station Receiving Antenna 11. References 6-3 6-3 6-6 6-8 6-9 6-9 6-18 6-22 6-24 6-25 6-32 6-1 Pyong Kiel Park was born in Pyong-An-Do, Korea. He received his BSEE degree from In-Ha University, Korea, in 1962, the MSEE degree from Yon Sei University, Korea, in 1965, and the PhD in electrical engineering from UCLA in 1979.