博碩士論文 945201098 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:86 、訪客IP:3.147.46.183
姓名 宋昆霖(Kun-lin Sung)  查詢紙本館藏   畢業系所 電機工程學系
論文名稱 電離層斷層掃描之研究
(computerized ionosphere tomography)
相關論文
★ 超寬頻共平面波導帶通濾波器之研製★ 車用行動通訊多頻組合式天線之研製
★ V頻段與W頻段微波光子通信系統中積體漸進式開槽天線之研製★ 寬頻共平面波導饋入圓形單偶極天線之研製
★ 利用局部高密度網格提升電離層斷層掃描結果之辨識度★ 人工電子眼中無線傳輸元件之研製
★ 多頻帶圓形單極天線之研製★ 微小化超寬頻共平面波導帶通濾波器之研製
★ 可繞式小型偶極天線之研製★ 共平面波導饋入式圓極化環形單極天線之研製
★ 應用於IEEE 802.11n/b/g 2.4GHz無線基地台之平面式偶極陣列天線研製★ W頻段光子發射器中射頻前端電路之研製
★ W頻段光子發射器中天線陣列之研製★ 頻寬可重組式微波帶通濾波器之研製
★ 應用於Radio-over-Fiber系統之超高速微波光子發射器★ 智慧型手機內之多頻段天線優化
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   [檢視]  [下載]
  1. 本電子論文使用權限為同意立即開放。
  2. 已達開放權限電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。
  3. 請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。

摘要(中) 傳統電離層觀測技術,如電離層雷達(Ionosonde)、非同調散射雷達(Incoherent Scattering Radar, ISR)觀測技術,僅能獲得雷達本地上空之電離層電子濃度資訊。相較而言,電離層斷層掃描技術(Ionospheric Tomography)可經由衛星與全球地面接收站之電波訊號,探測較大尺度及多維度之電離層結構。本論文對常用之斷層掃描演算法(algorithm),代數演算法(algebraic reconstruction techniques, ART)、倍數代數演算法(multiplicative algebraic reconstruction techniques, MART)、以及同步迭代演算法(simultaneous iterations reconstruction technique, SIRT),透過對數個典型之電離層電子濃度分佈場景(scenario)進行有系統的參數分析(parametric study),以期瞭解各演算法中參數設定對反衍結果之影響,進而一窺各演算法之特性及其適用之反衍結構,此研究對於實際電離層觀測資料反衍時演算法選取將有很大的助益。
摘要(英) The parametric study of the traditionally-used algorithms, viz. algebraic reconstruction technique (ART), multiplicative algebraic reconstruction technique (MART), and simultaneous iterations reconstruction technique (SIRT), for computerized ionosphere tomography (CIT) is presented in this thesis. Also, the study of incorporation of the horizontal integration paths into the retrieval to alleviate the issue on retrieving multi-layered ionosphere structures is demonstrated. Specifically, each of the three algorithms is applied to retrieve the electron density of several scenarios, which mimic the classical irregularities in the Earth’s ionosphere. The impact of the parameters associated with each algorithm on the retrieval results is investigated on a case-by-case manner. Technically speaking, the MART and SIRT are more suitable for CIT as they are essentially case independent. Indeed, the MART promises no artifacts in the retrieved images and a relatively good similarity to the proposed scenarios, whereas the SIRT obtains relatively accurate calculation in the vertical total electron content. This study provides a better understanding of the CIT algorithms as well as directions to develop the avenues for further improvement on the algorithms.
關鍵字(中) ★ 電離層
★ 斷層掃描
★ 電離層斷層掃描
關鍵字(英) ★ tomography
★ algorithm
★ Ionospheric Tomography
論文目次 中文摘要..................................................i
英文摘要.................................................ii
誌謝....................................................iii
圖目錄..................................................vii
表目錄..................................................xii
第一章 緒論...............................................1
1.1 前言.............................................. 1
1.2 研究動機.......................................... 2
1.3 論文提要.......................................... 2
第二章 電離層簡介.........................................3
2.1 電離層簡介........................................ 3
2.2 電離層折射率...................................... 5
第三章 斷層掃描方法.......................................9
3.1 電腦斷層掃描...................................... 9
3.2 電離層斷層掃描原理................................ 9
3.3 反衍場景......................................... 12
3.3.1 場景A ...................................... 13
3.3.2 場景B ...................................... 14
3.3.3 場景C ...................................... 15
3.3.4 場景D ...................................... 16
3.3.5 場景E ...................................... 17
3.4 反衍區間與電波路徑設定........................... 18
3.5 演算法初始值設定................................. 19
3.6 迭代終止條件..................................... 20
3.7 演算法........................................... 20
3.7.1 代數演算法ART .............................. 21
3.7.2 倍數代數演算法MART ......................... 22
3.7.3 同步迭代演算法SIRT ......................... 23
第四章 斷層掃描反衍結果..................................24
4.1 場景A............................................ 24
4.1.1 ART 反衍結果................................ 25
4.1.2 MART 反衍結果............................... 28
4.1.3 SIRT 反衍結果............................... 31
4.2 場景B............................................ 36
4.2.1 ART 反衍結果................................ 36
4.2.2 MART 反衍結果............................... 36
4.2.3 SIRT 反衍結果............................... 40
4.3 場景C............................................ 42
4.3.1 ART 反衍結果................................ 43
4.3.2 MART 反衍結果............................... 45
4.3.3 SIRT 反衍結果............................... 47
4.4 場景D............................................ 50
4.4.1 ART 反衍結果................................ 50
4.4.2 MART 反衍結果............................... 52
4.4.3 SIRT 反衍結果............................... 54
4.5 場景E............................................ 58
第五章 討論與結論........................................62
5.1 討論............................................. 62
5.2 結論............................................. 63
參考文獻.................................................64
參考文獻 [1] R. D. Hunsucker, "Radio Techniques for Probing the Terrestrial Ionosphere" , Springer-Verlag, Berlin, 1991.
[2] K. C. Yeh, , and T. D. Raymund, " Limitations of ionospheric imaging by tomography",Radio Scienc, vol. 26, p. 1361,1991.
[2] K. C. Yeh, , and T. D. Raymund, " Limitations of ionospheric imaging by tomography",Radio Scienc, vol. 26, p. 1361,1991.
[3] T . D. Raymund, S. J. Franke, and K. C. Yeh, "Ionospheric tomography:its limitations and reconstruction methods", J. Atmos. Terr Phys., vol.56, pp. 637-657, 1994.
[4] G. Breit, and M. A. Tuve, "A test of the existence of the conducting layer" , Physical Review, vol. 28, p. 554, 1926.
[5] N. Balan, I. S. Batista, M. A. Abdu, G. J. Bailey, S. Watanabe, J. MacDougall, and J. H. A. Sobral, "Variability of additional layer in theequatorial ionosphere over Fortaleza", J. Geophys. Res., vol. 105, No. 10, p.603, 2000.
[6] C. C. Hsiao, J. Y. Liu, R. T. Tsunoda, S. Fukao, S. Saroso, K. Nozaki, V. L. Badillo, F. T. Berkey, S. W. Chen, and M. Yamamoto, " Evidence for the geographic control of additional layer formation in the low-latitude ionosphere", Adv. Space Res., vol 27,p.1293, 2001.
[7] K. J. W. Lynn, T. J. Harris, M. Sjarifudin, "Stratification of the F2 layer observed in southeast Asia" , J. Geophys. Res., vol. 105, No. 27, p.147, 2000.
[8] Li-Bo. Liu, Wei-Xing Wan, Jian-Nan Tu and Zong-Ti Bao, " Modeling of the ionospheric response to the solar eclipse of 24 October 1995" , Terr. Atmos. Oceanic Sci., vol. 11, p. 543, 2000.
[9] G. C. Fehmers , " Tomography of the ionosphere " thesis of Physics Department of the Eindhoven University of Technology ,1996.
[10] K. C. Yeh and C. H. Liu, " Theory of Ionospheric Waves " , Academic Press, New York, 1972.
[11] K. Davies, "Ionospheric Radio ", Short Run Press Ltd., Exeter, England,1990.
[12] J. A. Ratcliffe, " An Introduction to the Ionosphere and Magnetosphere" , Cambridge, UK, 1972.
[13] National Geophysical Data Center, US Department of Commerce
[14] K. G., Budden, "The propagation of radio waves", Cambridge University Press., 1985.
[15] K. Rawer , "Wave propagation in the ionosphere", Kluwer Academic Publishers, Dordrecht, 1993.
[16] J. Radon , " Uber die Bestimmung von Funktionen durch ihre Integralwerte langs gewisser Mannigfaltigkeiten (On the determination of function from their integrals along certain manifolds) " , Math. Phys. Kl., 69, pp. 262-267 , 1917.
[17] A. C. Kak, and M. Slaney. "Principles of Computerized Tomographic Imaging",IEEE press, New York, 1988.
[18] E. L. Afraimovich, O. M. Pirog, and A. I. Terekhov, "Diagnostics of large-scale structures of the high-latitude ionosphere based on tomographic treatment of navigation-satellite signals and of data from ionosphere stations," J. Atmos. Terr. Phys., vol. 54, pp.1265-1273, 1992.
[19] T. D. Raymund , J. R. Austen, S. J. Franke, C. H. Liu, J. A. Klobuchar and J. Stalker, "Application of computerized tomography to investigation of ionospheric structures," Radio Science, vol. 25, pp.771-789. 1990.
[20] J. R. Austen, S. J. Franke, and C. H. Liu, "Ionospheric imaging using computerized tomography," Radio Science, vol. 23, no. 3, pp.299-307, 1988.
[21] G. Fehmers , "A new algorithm for ionospheric tomography ", in proceedings of the International Beacon Satellite Symposium, edited by L. Kersley, Univ. of Wales, Aberystwyth, pp. 52-55,1994.
[22] S. E. Pryse, L. Kersley, "A preliminary experimental test of ionospheric tomography ", J. Atmos. Terr. Phys., vol. 54, pp. 1007-1012. 1992.
[23] R. Leitinger, H.P. Ladreiter, G. Kirchengast, "Ionosphere tomography with data from satellite reception of global navigation satellite system signals and ground reception of Navy Navigation Satellite System signals ", Radio Science, vol. 32, pp. 1657–1669, 1997.
[24] E. J. Fremouw, J. A. Secan, and B.M. howe, "Application of stochastic inverse theory to ionospheric tomography", Radio Science, vol. 17, pp.721-732, 1992.
[25] J. R. Austen, S. J. Franke, and C. H. Liu, "Inonspheric imaging using computerized tomography", Radio Science, vol. 23, No. 3,pp.299-307, 1988.
[26] 黃胤年, "電波傳波與天線 " ,五南圖書出版股份有限公司, 台北市, 2003.
[27] 蕭俊傑, "電離層波動垂直能量傳播之研究 " , 中壢, 2003.
[28] 董志聖, "三維電離層斷層掃描之模擬研究 " , 中壢, 2000.
[29] 李謹佑, "電離層斷層掃描新方法之研究 " , 中壢, 2004.
[30] 林憫惠, "應用改良式二次規劃法作電離層電腦斷層掃描影像重建之研究 " , 中壢, 2006.
[31] 葉怡君, "赤道異常區三維電離層之斷層掃描模擬研究" , 中壢, 2001.
[32] 劉建廷, "結合NNSS 與GPS/MET 衛星資料於電離層斷層掃描觀測及其比較 " , 中壢, 2000.
[33] 郭鎮誠, "應用電離層斷層掃描研究颱風對電離層之影響 " , 中壢, 2006.
指導教授 陳念偉(Nan-Wei Chen) 審核日期 2007-7-13
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明