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Bibliography - High Frequency Antennas
Author: Edmund A. Laport
1. Baker, W. G., A Chart for Rhombic Antenna Design, A.W.A. Tech. Rev., 6:177, 1944.
2. Barfield, R. H., and W. Roes, Short-wave Adcock Direction Finder, /. IEE, 81:683, 1937.
3. Barker, R. H., Rhombic Aerial Design Chart, Wireless Engr., 25:361, November, 1948.
4. Baumler, M., K. Kruger, H. Plendl, and W. Pfitzer, Radiation Measurements of a Short Wave Directive Antenna at the Nauen High Power Radio Station, Proc. IRE, May, 1931, p. 812.
5. Beverage, H. H., and H. O. Peterson, Diversity Receiving System of RCA Communications, Inc., for Radiotelegraphy, Proc. IRE, 19:531, April, 1931.
6. Bown, R. Trans-oceanic Radiotelephone Development; Multiple Unit Steerable Antenna, Proc. IRE, 25:1131, September, 1937.
7. Bown, R., Researches in Radiotelephony; Multiple-unit Steerable Antenna, J. IEE, 83:395, September, 1939.
8. Bruce, E., Developments in Short-wave Directive Antennas, Proc. IRE, 19:1406, August, 1931; Bell System Tech. J., 10:656, October, 1931.
9. Bruce, E., A. C. Beck, and L. R. Lowry, Horizontal Rhombic Antennas, Proc. IRE, 23:24, January, 1935.
10. Bruce, E., and A. C. Beck, Experiments with Directivity Steering for Fading Reduction, Proc. IRE, 23:357, April, 1935; Bell System Tech. J., 14:195, April, 1935.
11. Cafferata, H., A Generalized Radiation Formula for Horizontal Rhombic Antennas, Marconi Rev., Issues 80, 81, and 82, 9(1), January-March, 1946, 9(2), April-June, 1946, 9(3), July-September, 1946.
12. Carter, P. S., C. W. Hansell, and N. E. Lindenblad, Development of Directive Transmitting Antennas by RCA Communications, Proc. IRE, 19:1733, October, 1931.
13. Chamberlain, A. B., CBS International Broadcast Facilities, Proc. IRE. 30:118, March, 1942.
14. Christiansen, W. N., Directional Patterns for Rhombic Antennae, A.W.A. Tech. Rev., 7:33, 1946.
15. Christiansen, W. N., W. W. Jenvey, and R. D, Carman, Radio-frequency Measurements on Rhombic Antennae, A.W.A. Tech. Rev., 7(2) 131, 1946.
16. Christiansen, W. N., Rhombic Antenna Arrays, A.W.A. Tech. Rev., 7(4): 361, 1947.
17. Everitt, W. L., and J. F. Byrne, Single Wire Transmission Lines for Shortwave Antennas, Ohio State Univ. Eng. Expt. Sta. Bull, 52:1, 1930.
18. Foster, Donald, Radiation from Rhombic Antennas, Proc. IRE, 26:1327, October, 1937.
19. Franz, K., Gain and Absorption Area of Large Directional Aerials, Hoch-frequenztech. u. Elektroakustic, December, 1939, p. 198.
20. Friis, H. T., New Directional Receiving System, Proc. IRE, 13:685, December, 1925.
21. Friis, H. T., and C. R. Feldman, Multiple Unit Steerable Antenna for Shortwave Reception, Proc. IRE, 25:841, July, 1937; Bell System Tech. J., 16:337, July, 1937.
22. Gill, A. J., Developments in Radio Engineering Carried Out by the Post Office Engineering Department, /. IEE, February, 1939, p. 256.
23. Goddess, G., NEC Beam Antennas, Communications (N.Y.), March, 1939, p. 16.
24. Grosskopf, J., and K. Vogt, Polarisation Measurements in the Field of Horizontal Transmitting Dipole, abstract, Wireless Engr., 21:437, September, 1944.
25. Harper, A. E., " Rhombic Antenna Design," D. Van Nostrand Company, Inc., New York, 1941.
26. Harrison, C. W., Jr., Characteristics of the Two-antenna Array, Proc. IRE., 31:75, February, 1943.
27. Harrison, C. W., Jr., Radiation from Vee Antennas, Proc. IRE, 31:362, July, 1943.
28. Harrison, C. W., Jr., Radiation Field of Long Wires, with Application to Vee Antennas, J. Applied Phys., 14:537, October, 1943.
29. Hayes, L. W., and B. N. McLarty, Empire Service Broadcasting Station at Daventry, /. IEE, September, 1939, p. 328.
30. Howe, G. W. O., Polar Diagram of a Simple Broadside Array, Wireless Engr., 19:193, May, 1942.
31. Kraus, J. D., Multi-wire Dipole Antennas, Electronics, January, 1940, p. 26.
32. Lewin, L., Rhombic Transmitting Aerial, Wireless Engr., May, 1941, p. 140.
33. Meissner, A., Directional Radiation with Horizontal Antennas, Proc. IRE, 15:928, November, 1927.
34. Morton, H. B., and J. W. Whitehead, Two Transmitters on One Aerial (3-15 mc/c.), Elec. Eng., 20(243), May, 1948.
35. Page, H., Measured Performance of Horizontal Dipole Transmitting Arrays, Electrician, 133:408, Nov. 3, 1944; Elec. Rev. (London), 135:625, Nov. 3, 1944.
36. Polkinghorn, F. A., Single Sideband MUSA Receiving System for Commercial Operation on Transatlantic Radio-telephone Circuits, Bell System Tech. J., April, 1940, p. 306.
37. Ross, W., Calibration of 4-aerial Adcock Direction Finders, J. IEE, August, 1939, p. 192.
38. Royal Air Force Signal Manual, Part II, Air Pub. 1093, May, 1937, Chap. 14, Propagation, Chap. 15, Aerials and Aerial Arrays.
39. Smale, J. A., Comparative Merits of Different Types of Directive Aerials for Communications, J. IEE, 9(Part III): 12, March, 1944; Electrician, 132:74, Jan. 28, 1944; Elec. Rev. (London), 134:119, Jan. 28, 1944.
40. Smith, X. S., High-frequency Broadcasting in Australia, Proc. IRE (Australia), October, 1948, p. 4. Multiple-frequency operation of high-frequency antennas. Antenna switching. Use of coupled sections one-half wavelength long. Antenna layouts.
41. Sterba, E. J., Theoretical and Practical Aspects of Directional Transmitting Systems, Proc. IRE, 19:1184, July, 1931.
42. Waidelick, D. L., General Folded Dipole Antenna Design, Communications N.Y.), April, 1949, p. 18.
43. Walmsley, T., Beam Arrays and Transmission Lines, J.. IEE, February, 1931.
44. Walmsley, T., New Type of Directive Aerial, Wireless Engr., 9:662, November, 1932.
45. Wells, X., Short-wave Dipole Aerials, Wireless Engr., 20:219, May, 1943.
46. Wells, X., Quadrant Aerial; an Omni-directional Wide-band Horizontal Aerial for Short Waves, J. IEE, 91(3) 182, December, 1944. Brief paper, Marconi Rev., 9(1), January-March, 1946.
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