References – Chapter 6: Abdel-Rahman, M., Janischewskyj, W., Hussein, A.M., Rachidi, F., Chang, J.S. 1998. Statistical analysis of magnetic fields due to CN tower multistroke flashes. In Proc. 24th Int. Conf. on Lightning Protection, Birmingham, United Kingdom, pp. 107-112. Anderson, R.B., and Eriksson, A.J. 1980. Lightning parameters for engineering application. Electra 69: 65-102. Asakawa, A., Miyake, K., Yokoyama, S., Shindo, T., Yokota, T., and Sakai, T. 1997. Two types of lightning discharges to a high stack on the coast of the sea of Japan in Winter. IEEE Trans. Pow. Del. 12: 122231. Axup, P.R. 1983. The effects of towers on lightning current measurements. Masters Thesis, Air Force Institute of Technology. Baba, Y., and Ishii, M. 2001. Numerical electromagnetic field analysis of lightning current in tall structures. IEEE Trans. Pow. Del. 16(2): 324-8. Bazelyan, E.M., Gorin, B.N., and Levitov, V.I. 1978. Physical and Engineering Foundations of Lightning Protection, 223 p. Leningrad: Gidrometeoizdat. Beierl, O. 1991. Lightning current measurements at the Peissenberg tower. In Proc. 7th Int. Symp. on High Voltage Engineering, Dresden, Germany, paper 81.02. Beierl, O. 1992. Front shape parameters of negative subsequent strokes measured at the Peissenberg tower. In Proc. 21st Int. Conf. on Lightning Protection, Berlin, Germany, pp. 19-24. Berger, K. 1961. Gewitterforschung auf dem Monte San Salvatore. ETZ-A 82: 249-60. Berger, K., 1967. Novel observations on lightning discharges: Results of research on Mount San Salvatore. J. Franklin Inst. 283: 478-525. Berger, K. 1972. Methoden und Resultate der Blitzforschung auf dem Monte San Salvatore bei Lugano in den Jahren 1963-1971. Bull. Schweiz. Elektrotech, Ver. 63: 1403-22. Berger, K. 1977. The Earth Flash. In Lightning, Vol. 1, Physics of Lightning, ed. R.H. Golde, pp. 119-190. New York: Academic Press. Berger, K. 1978. Blitzstrom-Parameter von Aufwartsblitzen. Bull. Schweiz. Elektrotech. Ver. 69: 353-60. Berger, K., Anderson, R.B., and Kroninger, H. 1975. Parameters of lightning flashes. Electra 80: 223-37. Berger, K., and Garbagnati, E. 1984. Lightning current parameters. Results obtained in Switzerland and in Italy. URSI Conf., Florence, Italy, 13 p. Berger, K., and Vogelsanger, E. 1965. Messungen und Resultate der Blitzforschung der Jahre 1955-1963 auf dem Monte San Salvatore. Bull. Schweiz. Elektrotech. Ver. 56: 2-22. Berger, K., and Vogelsanger, E. 1966. Photographische Blitzuntersuchungen der Jahre 1955-1965 auf dem Monte San Salvatore. Bull, Schweiz, Elektrotech. Ver. 57: 599-620. Berger, K., and Vogelsanger, E. 1969. New results of lightning observations. In Planetary Electrodynamics, eds. S.C. Coroniti and J. Hughes, pp. 489-510, New York: Gordon and Breach. Bosart, L.F., Chen, T.J., Orville, R.E., and Roesli, H.B. 1974. A preliminary study of the synoptic conditions associated with upward and downward lightning flashes over Mt. San Salvatore, Lugano, Switzerland. Tellus 26: 495-505. Brook, M., Armstrong, G., Winder, R.P.H., Vonnegut, B., and Moore, C.B. 1961. Artificial initiation of lightning discharges. J. Geophys. Res. 66: 3967-9. Byerley, L.G., Brooks, W.A., Noggle, R.C., and Cummins, K.L. 1999. Towers, lightning and human affairs. In Proc. 11th Int. Conf. on Atmospheric Electricity, Guntersville, Alabama, pp. 180-183. Carlson, A.B. 1996. Circuits. 838 pp., New York: John Wiley & Sons. Chang, J.S., Beuthe, T.G., Hu, G.G., Stamoulis, G., and Janischewskyj, W. 1985. Thundercloud electric field measurements in the 553-m CN tower during 1978-1983. J. Geophys. Res. 90: 6087-90. Chang, J.S., Beuthe, T.G., Seto, L., Duft, A., Hayashi, N., Chisholm, W., and Janischewskyj, W. 1989. An investigation of the possible relationships between thundercloud electric fields and the lightning parameters for tall structures. J. Geophys. Res. 94: 13,197-205. Chen, M., Takagi, N., Watanabe, T., Wang, D., Kawasaki, Z.-I., and Liu, X. 1999. Spatial and temporal properties of optical radiation produced by stepped leaders. J. Geophys. Res. 104: 27,573-84. Crawford, D.E. 1998. Multiple-station measuredments of triggered lightning electric and magnetic fields. M.S. Thesis, Univ. Florida, Gainesville, 282 p. Davis, R., and Standring, W.G. 1947. Discharge currents associated with kite balloons. Proc. Roy. Soc. (London) A191: 304-22. Depasse, P. 1994a. Statistics on artificially triggered lightning. J. Geophys. Res. 99: 18,515-22. Diendorfer, G., Mair, M., Schulz, W., and Hadrian, W. 2000. Lightning current measurements in Austria Experimental setup and first results. In Proc. 25th Int. Conf. on Lightning Protection, Rhodes, Greece, pp. 44-47. Diendorfer, G., and Schulz, W. 1998. Lightning incidence to elevated objects on mountains. In Proc. 24th Int. Conf. on Lightning Protection, Birmingham, United Kingdom, pp. 173-175. Diendorfer, G., Schulz, W., and Fuchs, F. 1998a. Comparison of correlated data from the Austrian lightning location system and measured lightning currents at the Peissenberg tower. In Proc. 24th Int. Conf. on Lightning Protection, Birmingham, United Kingdom, pp. 168-172. Diendorfer, G., Schulz, W., and Rakov, V.A. 1998b. Lightning characteristics based on data from the Austrian lightning locating system. IEEE Trans. on Electromagn. Compat. 40(II): 452-64. Diendorfer, G., and Uman M.A. 1990. An improved return stroke model with specified channel-base current. J. Geophys. Res. 95: 13,62144. Eriksson, A.J. 1978a. Lightning and tall structures. Trans. South African IEE 69: 2-16. Eriksson, A.J. 1978b. A discussion on lightning and tall structures. CSIR Special Report Elek 152, National Electrical Engineering Research Institute, Pretoria, South Africa. Eriksson, A.J. 1982. The CSIR lightning research mast-data for 1972-1982, NEERI Internal Report No. EK/9/82, National Electrical Engineering Research Institute, Pretoria, South Africa. Fisher, R.J., Schnetzer, G.H., Thottappillil, R., Rakov, V.A., Uman, M.A., and Goldberg, J.D. 1993. Parameters of triggered-lightning flashes in Florida and Alabama. J. Geophys. Res. 98: 22,887-902. Fuchs, F. 1998a. Lightning current and LEMP parameters of upward discharges measured at the Peissenberg tower. In Proc. 24th Int. Conf. on Lightning Protection, vol. 1, Birmingham, United Kingdom, pp. 1722. Fuchs, F. 1998b. On the transient behaviour of the telecommunication tower at the mountain Hoher Peissenberg. In Proc. 24th Int. Conf. on Lightning Protection, vol. 1, Birmingham, United Kingdom, pp. 36-41. Fuchs, F., Landers, E.U., Schmid, R., and Wiesinger, J. 1998. Lightning current and magnetic field parameters caused by lightning strikes to tall structures relating to interference of electronic systems. IEEE Trans. Electromagn. Compat. 40: 444-51. Garbagnati, E., Giudice, E., and Lo Piparo, G.B. 1978. Measurement of lightning currents in Italy - results of a statistical evaluation. ETZ-A 99: 664-8. Garbagnati, E., Giudice, E., Lo Piparo, G.B., and Magagnoli, U. 1974. Survey of the characteristics of lightning stroke currents in Italy - results obtained in the years from 1970 to 1973. ENEL Rep. R5/63-27. Garbagnati, E., Giudice, E., Lo Piparo, G.B., and Magagnoli, U. 1975. Rilievi delle caratteristiche dei fulmini in Italia. Risultati ottenuti negli anni 1970-1973. L'Elettrotecnica 62: 237-49. Garbagnati, E., and Lo Piparo, G.B. 1970. Stazione sperimentale per il rilievo delle caratteristiche dei fulmini. L'Elettrotecnica 57: 288-97. Garbagnati, E., and Lo Piparo, G.B. 1973. Nuova stazione automatica per il rilievo delle caratteristiche dei fulmini. L'Energia Elettrica 6: 375-83. Garbagnati, E., and Lo Piparo, G.B. 1982a. Results of 10 years investigation in Italy. In Proc. Int. Aerospace Conf. on Lightning and Static Electricity, Oxford, England, paper A1, 12 p. Garbagnati, E., and Lo Piparo, G.B. 1982b. Parameter von Blitzstroemen. ETZ-A 103: 61-5. Garbagnati, E., Marinoni, F., and Lo Piparo, G.B. 1981. Parameters of lightning currents. Interpretation of the results obtained in Italy. In Proc. 16th Int. Conf. on Lightning Protection, Szeged, Hungary, paper R1.03, 16 p. Geldenhys, H.T., Eriksson, A.J., and Bourn, G.W. 1989. Fisteen years of data of lightning current measurements on 60 m mast. Trans. South African IEE 80: 130-58. Golde, R.H. 1978. Lightning and tall structures. IEE Proc. 125: 347-51. Gorin, B.N., Levitov, V.I., and Shkilev, A.V. 1977. Lightning strikes to the Ostankino tower. Elektrichestvo 8: 19-23. Gorin, B.N., Sakharova, G.S., Tikhomirov, V.V., and Shkilev, A.V. 1975. Results of studies of lightning strikes to the Ostankino TV tower. Trudy ENIN 43: 63-77. Gorin, B.N., and Shkilev, A.V. 1984. Measurements of lightning currents at the Ostankino tower. Elektrichestvo 8: 64-5. Goshima, H., Motoyama, H., Asakawa, A., Wada, A., Shindo, T., and Yokoyama, S. 2000. Characteristics of electromagnetic fields due to winter lightning stroke current to a high stack. Trans. IEE Japan 120-B (1): 44-8. Guerrieri, S., Heidler, F., Nucci, C.A., Rachidi, F., and Rubinstein, M. 1996. Extension of two return stroke models to consider the influence of elevated strike objects on the lightning return stroke current and the radiated electromagnetic field: Comparison with experimental results. In Proc. Int. Symp. on Electromagn. Compat. (EMC'96 ROMA), Rome, Italy, pp. 701-706. Guerrieri, S. Krider, E.P., and Nucci, C.A. 2000. Effects of traveling-waves of current on the initial response of a tall Franklin rod. In Proc. 25th Int. Conf. on Lightning Protection, Rhodos, Greece, pp. 94-99. Guerrieri, S., Nucci, C.A., Rachidi, F., and Rubinstein, M. 1998. On the influence of elevated strike objects on directly measured and indirectly estimated lightning currents. IEEE Trans. Pow. Del. 13: 1543-55. Hagenguth, J.H., and Anderson, J.G. 1952. Lightning to the Empire State Building. AIEE Trans. 71 (Pt. 3): 6419. Heidler, F., and Zundl, T. 1995. Influence of tall towers on the return stroke current. In Proc. 1995 Int. Conf. on Lightning and Static Electricity, Williamsburg, Virginia, pp. 67/1-10. Horii, K., and Ikeda, G. 1985. A consideration on success conditions of triggered lightning. In Proc. 18th Int. Conf. on Lightning Protection, Munich Germany, paper 1-3, 6 p. Hubert, P. 1984. Triggered lightning in France and New Mexico. Endeavour 8: 85-9. Hubert, P., Laroche, P., Eybert-Berard, A., and Barret, L. 1984. Triggered lightning in New Mexico. J. Geophys. Res. 89: 2511-21. Hussein, A.M., Janischewskyj, W., Chang, J.-S., Shostak, V., Chisholm, W.A., Dzurevych, P., and Kawasaki, Z.-I. 1995. Simultaneous measurement of lightning parameters for strokes to the Toronto Canadian National tower. J. Geophys. Res. 100: 8853-61. Janischewskyj, W., Hussein, A.M., Shostak, V., Rusan, I., Li, J.-X., and Chang, J.-S. 1997. Statistics of lightning strikes to the Toronto Canadian National tower (1978-1995). IEEE Trans. Pow. Del. 12: 1210-21. Janischewskyj, W., Shostak, V., Barratt, J. Hussein, A.M., Rusan, R., and Chang, J.-S. 1996. Collection and use of lightning return stroke parameters taking into account characteristics of the struck object. In Proc. 23rd Int. Conf. on Lightning Protection, Florence, Italy, pp. 16-23. Janischewskyj, W., Shostak, V., and Hussein, A.M. 1998. Comparison of lightning electromagnetic field characteristics of first and subsequent return strokes to a tall tower: 1. Magnetic field. In Proc. 24th Int. Conf. on Lightning Protection, Birmingham, United Kingdom, pp. 245-251. Janischewskyj, W., Shostak, V., and Hussein, A.M. 1999a. Lightning electric field characteristics of first and subsequent return strokes to a tall tower. In Proc. 11th Int. Symp. on High Voltage Engineering, London, United Kingdom, IEE Publ. No. 467, v. 1, pp. 270-274. Janischewskyj, W., Shostak, V., Hussein, A.M., and Kordi, B. 1999b. A lightning flash containing strokes of opposite polarities. CIGRE SC 33.99 (COLL), 2 p. Kitterman, C.G. 1981. Concurrent lightning flashes on two television transmission towers. J. Geophys. Res. 86: 5378-80. Kostenko, M.V. 1995. Electrodynamic characteristics of lightning and their influence on disturbances of highvoltage lines. J. Geophys. Res. 100: 2739-47. Krider, E.P., and Wetmore, R.H. 1987. Upward streamers produced by a lightning strike to radio transmission towers. J. Geophys. Res. 92: 9859-62. Lacerda, M., Pinto, O., Pinto, I.R.C.A., Diniz, J.H., and Carvalho, A.M. 1999. Analysis of negative downward lightning current curves from 1985 to 1994 at Morro do Cachimbo research station (Brazil). In Proc. 11th Int. Conf. on Atmospheric Electricity, Guntersville, Alabama, pp. 42-45. Laroche, P., Eybert-Berard, A., and Barret, L. 1985. Triggered lightning flash characteristics. In Proc. 10th Int. Aerospace and Ground Conf. on Lightning and Static Electricity, Paris, France, pp. 231-239. McCann, D.G. 1944. The measurement of lightning currents in direct strokes. Trans. AIEE 63: 1157-64. McComb, T.R., Cherney, E.A., Linck, H., and Janischewskyj, W. 1980. Preliminary measurements of lightning flashes to the C.N. tower in Toronto. Can. Elec. Eng. J. 5: 3-9. McEachron, K.B. 1939. Lightning to the Empire State Building. J. Franklin Inst. 227: 149-217. McEachron, K.B. 1941. Lightning to the Empire State Building. Trans. AIEE 60: 885-9. Melander, B.G. 1984. Effects of tower characteristics on lightning arc measurements. In Proc. 1984 Int. Conf. on Lightning and Static Electricity, Orlando, Florida, pp. 34/1-34/12. Miyake, K., Suzuki, T., and Shinjou, K. 1992. Characteristics of winter lightning current on Japan Sea coast. IEEE Trans. Pow. Del. 7: 1450-6. Montandon, E. 1992. Lightning positioning and lightning parameter determination experiences and results of the Swiss PTT research project. In Proc. 21st Int. Conf. on Lightning Protection, Berlin, Germany, pp. 307-312. Montandon, E. 1995. Messung und Ortung von Blitzeinschlaegen und ihren Auswirkungen am Fernmeldeturm "St. Chrischona" bei Basel der Schweizerischen Telecom PTT. Elektrotechnik und Informationstechnik 112: 283-9. Montandon, E., and Beyeler, B. 1994. The lightning measuring equipment on the Swiss PTT telecommunications tower at St. Chrischona, Switzerland. In Proc. 22nd Int. Conf. on Lightning Protection, Budapest, Hungary, paper R 1c-06. Motoyama, H., Janischewskyj, W., Hussein, A.M., Rusan, R., Chisholm, W.A., and Chang, J.-S. 1996. Electromagnetic field radiation model for lightning strokes to tall structures. IEEE Trans. Pow. Del. 11: 1624-32. Mousa, A. 1986. A study of the engineering model of lightning strokes and its application to unshielded transmission lines. Ph.D. Dissertation, Univ. British Columbia, Vancouver, Canada. Müller-Hillebrand, D. 1960. On the frequency of lightning flashes to high objects. A study on the Gulf of Bothnia. Tellus 12: 444-9. Orville, R.E., and Berger, K. 1973. An unusual lightning flash initiated by an upward propagating leader. J. Geophys. Res. 78: 4520-5. Pierce, E.T. 1971. Triggered lightning and some unsuspected lightning hazards. Stanford Research Institute, Menlo Park, California, 20 p. Pierce, E.T. 1972. Triggered lightning and some unsuspected lightning hazards. Naval Research Reviews, pp. 14-18. Pinto, O., Pinto, I.R.C.A., Lacerda, M., Carvalho, A.M., Diniz, J.H., and Cherchiglia, L.C.L. 1997. Are equatorial negative lightning flashes more intense than those at higher latitudes? J. Atmos. Solar-Terr. Phys. 59: 1881-3. Podgorski, A.S., and Landt, J.A. 1987. Three dimensional time domain modeling of lightning. IEEE Trans. Pow. Del. 2: 931-8. Popolansky, F. 1965. Study of lightning strokes to high objects in Czechoslovakia. English Transl., ERA Trans./IB 2291. Rachidi, F., Janischewskyj, W., Hussein, A.M., Nucci, C.A., Guerrieri, S., and Chang, J.S. 1998. Electromagnetic fields radiated by lightning return strokes to high towers. In Proc. 24th Int. Conf. on Lightning Protection, Birmingham, United Kingdom, pp. 23-28. Rachidi, F., Janischewskyj, W., Hussein, A.M., Nucci, C.A., Guerrieri, S., Kordi, B., and Chang, J.S. 2001. Current and electromagnetic field associated with lightning-return strokes to tall towers. IEEE Trans. Elecromagn. Compat. 43(3): 356-67 Rakov, V.A., and Dulzon, A.A. 1987. Calculated electromagnetic fields of lightning return stroke. Tekh. Elektrodinam. 1: 87-9. Rakov, V.A., and Dulzon, A.A. 1991. A modified transmission line model for lightning return stroke field calculations. In Proc. 9th Int. Zurich. Symp. on Electromag. Compat., Zurich, Switzerland, pp. 229235. Rakov, V.A., Uman, M.A., Rambo, K.J., Fernandez, M.I., Fisher, R.J., Schnetzer, G.H., Thottappillil, R., Eybert-Berard, A., Berlandis, J.P., Lalande, P., Bonamy, A., Laroche, P., and Bondiou-Clergerie, A. 1998. New insights into lightning processes gained from triggered-lightning experiments in Florida and Alabama. J. Geophys. Res. 103: 14,117-30. Rusan, R., Janischewskyj, W., Hussein, A.M., and Chang, J.-S. 1996. Comparison of measured and computed electromagnetic fields radiated from lightning strikes to the Toronto CN tower. In Proc. 23rd Int. Conf. on Lightning Protection, Florence, Italy, pp. 297-303. Rustan, P.L., and Axup, P.R. 1984. Analysis of lightning current measurements. In Proc. 1984 Int. Conf. on Lightning and Static Electricity, Orlando, Florida, pp. 24/1-24/7. Shindo, T., and Aihara, Y., 1993. A shielding theory for upward lightning. IEEE Trans. Pow. Del. 8: 318-24. Shindo, T., Aihara, Y., and Suzuki, T. 1990. Model experiment of upward leaders - shielding effects of tall objects. IEEE Trans. Pow. Del. 5: 716-23. Shostak, V., Janischewskyj, W., Hussein, A.M., Chang, J.-S., and Kordi, B. 1999a. Return-stroke current modeling of lightning striking a tall tower accounting for reflections within the growing channel and for upward-connecting discharges. In Proc. 11th Int. Conf. on Atmospheric Electricity, Guntersville, Alabama, pp. 123-126. Shostak, V., Janischewskyj, W., Hussein, A.M., and Kordi, B. 1999b. Characteristics of return stroke current and electromagnetic field waveforms observed in multistroke lightning flashes to a tall tower. In Proc. 11th Int. Symp. on High Voltage Engineering, London, United Kingdom, IEEE Publ. No. 467, v. 2, pp. 389-392. Shostak, V., Janischewskyj, W., Hussein, A.M., and Kordi, B. 2000. Electromagnetic fields of lightning strikes to a tall tower: a model that accounts for upward-connecting discharges. In Proc. 25th Int. Conf. on Lightning Protection, Rhodes, Greece, pp. 60-65. Standler, R.B. 1975. The response of elevated conductors to lightning. Masters Thesis, New Mexico Institute of Mining and Technology. Strawe, D.F. 1979. Non-linear modeling of lightning return strokes. In Proc. of the Federal Aviation Administration/Florida Institute of Technology Workshop on Grounding and Lightning Technology, Melbourne, Florida, Report FAA-RD-79-6, pp. 9-15. Szpor, S., Wasilenko, E., Samula, J., Dytkowski, E., Suchocki, J., and Zaborowski, B. 1964. Results of lightning stroke registrations in Poland. CIGRE Rep. 319. Torres, H., Trujillo, O., Amortegui, F., Herrera, F., Pinzon, G., Quintana, C., Gonzalez, D., Rondon, D., Salgado, M., and Avila, D. 1999. Experimental station to measure directly lightning parameters in tropical zone. In Proc. 11th Int. Symp. on High Voltage Engineering, London, United Kingdom, IEE Publ. No. 467, v. 2, pp. 177-180. Uman, M.A., 1971. Understanding Lightning, 166 p. Pittsburgh: Bek Technical Publications. Uman, M.A. 1987. The Lightning Discharge, 377 p., San Diego: Academic Press. Uman, M.A. 2001. The Lightning Discharge, 377 p., Mineola, New York: Dover. Wang, D., Kawasaki, Z.I., Yamamoto, K., Matsuura, K., Chang, J.-S., and Janischewskyj, W. 1995. Luminous propagation of lightning attachment to CN tower. J. Geophys. Res. 100: 11,661-7. Wang, D., Rakov, V.A., Uman, M.A., Fernandez, M.I., Rambo, K.J., Schnetzer, G.H., and Fisher, R.J. 1999b. Characterization of the initial stage of negative rocket-triggered lightning. J. Geophys. Res. 104: 421322. Wang, D., Takagi, N., Watanabe, T., Rakov, V.A., and Uman, M.A. 1999c. Observed leader and return-stroke propagation characteristics in the bottom 400 m of the rocket triggered lightning channel. J. Geophys. Res. 104: 14,369-76. Zundl, 1994a. Lightning current and LEMP calculations compared to measurements gained at the Peissenberg tower. In Proc. 22nd Int. Conf. on Lightning Protection, Budapest, Hungary, paper R 1c-08. Zundl, T. 1994b. First results of the coordinated lightning current and LEMP measurements at the Peissenberg tower. In Proc. 22nd Int. Conf. on Lightning Protection, Budapest, Hungary, paper R 1c-09.