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http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/56186完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 江簡富(Jean-Fu Kiang) | |
| dc.contributor.author | Hong-Cheng Wei | en |
| dc.contributor.author | 魏宏丞 | zh_TW |
| dc.date.accessioned | 2021-06-16T05:18:13Z | - |
| dc.date.available | 2016-08-25 | |
| dc.date.copyright | 2014-08-25 | |
| dc.date.issued | 2014 | |
| dc.date.submitted | 2014-08-16 | |
| dc.identifier.citation | [1] M. Ianoz, “A review of HEMP activities in Europe,” IEEE Trans. Electromagn. Compat.,
vol. 55, no. 3, pp. 412-421, June 2013. [2] W. J. Karzas and R. Latter, “Detection of the electromagnetic radiation from nuclear explosions in space,” Phys. Rev., vol. 137, no. 5B, pp. 1369-1378, 1965. [3] C. L. Longmire, “On the electromagnetic pulse produced by nuclear explosions,” IEEE Trans. Electromagn. Compat., vol. 20, no. 1, pp. 3-12, Feb. 1978. [4] R. A. Roussel-Dupre, “Prompt nuclear EMP and synchrotron radiation: A resolution of two approaches,” IEEE Trans. Electromagn. Compat., vol. 47, no. 3, pp. 552-558, Aug. 2005. [5] C. D. Eng, “Development of the time dependence of the nuclear (E1) HEMP electric field,” IEEE Trans. Electromagn. Compat., vol. 53, no. 3, pp. 737-748, Aug. 2011. [6] C. Meng, “Numerical simulation of the HEMP environment,” IEEE Trans. Electromagn. Compat., vol. 55, no. 3, pp. 440 - 445, June 2013. [7] W. R. Graham, J. S. Foster, E. Gjelde, R. J. Hermann, H. M. Kluepfel, R. L. Lawson, G. K. Soper, L. L.Wood, and J. B.Woodart, “Report of the commission to assess the threat to the US from an electromagnetic pulse (EMP) attack,” US Congress Commission, 2008. [8] X.-Y. Huo and Y.-Z. Lei, “A new method for calculating transient electromagnetic responses of AC/DC power system with external electromagnetic pulse interference,” Prog. Electromagn. Res., vol. 13, pp. 245-260, 2010. [9] D. Hansen, H. Schaer, D. Koenigstein, H. Hoitink, H. Garbe, and D. V. Giri, “Response of an overhead wire near a NEMP simulator,” IEEE Trans. Electromagn. Compat., vol. 32, no. 1, pp. 18-27, Feb. 1990. [10] F. M. Tesche and P. R. Barnes, “A multiconductor model for determining the response of power transmission and distribution lines to a high altitude electromagnetic pulse (HEMP),” IEEE Trans. Power Delivery, vol. 4, no. 3, pp. 1955-1963, July 1989. [11] F. M. Tesche and P.R. Barnes, “The HEMP response of an overhead power distribution line,” IEEE Trans. Power Delivery, vol. 4, no. 3, pp. 1937-1944, July 1989. [12] V. J. Kruse, F. M. Tesche, T. K. Liu, and P. R. Barnes, “Flashover vulnerability of transmission and distribution lines to high-altitude electromagnetic pulse (HEMP),”IEEE Trans. Power Delivery, vol. 5, no. 2, pp. 1164-1169, Apr. 1990. [13] V. N. Greetsai, A. H. Kozlovsky, V. M. Kuvshinnikov, V. M. Loborev, Y. V. Parfenov, O. A. Tarasov, and L. N. Zdoukhov, “Response of long lines to nuclear high-altitude electromagnetic pulse (HEMP),” IEEE Trans. Antennas Propagat., vol. 40, no. 4, pp. 348-354, Nov. 1998. [14] D. F. Higgins, T. A. Tumolillo, W. A. Radasky, K. S. Smith, and J. P. Wondra, “Source region EMP coupling to long lines,” IEEE Trans. Nuclear Sci., vol. 28, no. 6, pp. 4440- 4445, Dec. 1989. [15] H. P. Neff, JR., D. A. Reed, “The effect of secondary scattering on the Induced current in a long wire over an imperfect ground from an incident EMP,” IEEE Trans. Antennas Propagat., vol. 37, no. 12, pp. 1554-1558, Dec. 1981. [16] L. W. Seiler, Jr., “A calculational model for high altitude EMP,” Air Force Inst. Technol., Wright-Patterson Air Force Base, Ohio, Mar. 1975. [17] O. D. Jefimenko, Electromagnetic Retardation and Theory of Relativity, Electret Scientific, 2004. [18] ITU Radiocommunication, “Electrical characteristics of the surface of the earth,” ITU Radiocommunication, ITU-R, 1992. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/56186 | - |
| dc.description.abstract | 本論文分析並模擬核爆產生之高空電磁脈波。首先依相關動態方程式計算初級及次級感應電流分佈,並代入Jefimenko 方程式以計算地面附近之入射電場,再根據地面介質頻域特性計算反射電場。數值模擬結果顯示高空電磁脈波包含一個脈衝和一個脈波,並可由理論推論其成因。模擬結果呈現反射場可能在某些情況下使脈衝時變率增加。 | zh_TW |
| dc.description.abstract | High-altitude electromagnetic pulses (HEMP’s) caused by a nuclear explosion is analyzed and simulated. The primary and the secondary electron currents induced by an explosion
are calculated by solving relevant dynamic equations, involving the geomagnetic field. These currents in the deposition region are substituted into the Jefimenko’s equation to calculate the incident electric field near the ground, and the reflected fields are calculated considering the frequency-dependent properties of the ground medium. The characteristics of impulse and pulse are simulated and analyzed. By simulations, the reflected field may cause a faster change of impulse field in certain cases. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-16T05:18:13Z (GMT). No. of bitstreams: 1 ntu-103-R01942085-1.pdf: 3067913 bytes, checksum: 028b3d70f6adef0a9d6ab791c59921c1 (MD5) Previous issue date: 2014 | en |
| dc.description.tableofcontents | Acknowledgment.. i
中文摘要..ii Abstract.. iii Table of Contents.. iv List of Figures.. v 1 Introduction.. 1 2 Theoretical Model.. 4 3 Results and Discussions.. 12 4 Conclusion.. 29 Bibliography.. 30 | |
| dc.language.iso | zh-TW | |
| dc.subject | 高空電磁脈衝 | zh_TW |
| dc.subject | Jefimenko 方程式 | zh_TW |
| dc.subject | 地面反射 | zh_TW |
| dc.subject | ground reflection | en |
| dc.subject | HEMP | en |
| dc.title | 含地面反射效應之高空電磁脈波模擬 | zh_TW |
| dc.title | Simulation of High-Altitude Electromagnetic Pulse (HEMP) near Ground with Reflection Effects | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 102-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 瞿大雄(Tah-Hsiung Chu),江衍偉(Yean-Woei Kiang) | |
| dc.subject.keyword | 高空電磁脈衝,Jefimenko 方程式,地面反射, | zh_TW |
| dc.subject.keyword | HEMP,ground reflection, | en |
| dc.relation.page | 32 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2014-08-17 | |
| dc.contributor.author-college | 電機資訊學院 | zh_TW |
| dc.contributor.author-dept | 電信工程學研究所 | zh_TW |
| 顯示於系所單位: | 電信工程學研究所 | |
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| ntu-103-1.pdf 未授權公開取用 | 3 MB | Adobe PDF |
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