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http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/38146完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 李枝宏 | |
| dc.contributor.author | Jen-Chiu Hsu | en |
| dc.contributor.author | 徐振球 | zh_TW |
| dc.date.accessioned | 2021-06-13T16:27:01Z | - |
| dc.date.available | 2005-07-19 | |
| dc.date.copyright | 2005-07-19 | |
| dc.date.issued | 2005 | |
| dc.date.submitted | 2005-07-14 | |
| dc.identifier.citation | [1.1] P.Howells, “Intermediate frequency side-lobe canceller,” U.S.Patemt 3202 990, Aug. 24, 1965
[1.2] S.P. Applebaum, “Adaptive arrays,” Syracuse Univ. Res. Corp., Tech. Rep. SPL TR 66-1, Aug. 1966 [1.3] B. Widrow, P.E. Mantey, L.J. Griffiths, and B.B. Goode, “Adaptive antenna systems,” Proc. IEEE, vol. 55, pp. 2143-2159, Dec. 1967 [1.4] W.F. Gabriel, “Adaptive arrays - An introduction,” Proc. IEEE, vol. 64, pp. 239-272, Feb. 1976 [1.5] R.T. Compton, Jr., “An adaptive array in a spread – spectrum communication system,” Proc. IEEE, vol.66, pp.289-298, Mar.1978 [1.6] R.T. Compton, Jr., R.J. Huff, W.G. Swarner, and A.A. Ksienski, “Adaptive arrays for communication systems: An overview of research at the Ohio State University,” IEEE Trans. Antennas Propagate., vol. AP-24, pp. 599-606, Sept. 1976 [1.7] S. Haykin, Array Processing Applications to Radar. New York: Dowden, Hutchinson and Ross, 1980 [1.8] R.A. Monzingo and T.W. Miller, Introduction to Adaptive Arrays. New York: Wiley, 1980 [1.9] T.J. Shan and T. Kailath, “Adaptive beamforming for coherent signals and interference,” IEEE Trans. on Acoustics, Speech, and Signal Processing, vol. 38, no. 3, pp. 527-536, June 1985 [1.10] K.M. Duvall, “Signal cancellation phenomena in adaptive antenna: causes and cures,” IEEE Trans. on Antennas and Propagation, vol. 30, no. 3, pp. 469-478, May 1982 [1.11] M. Wax and T. Kailath, “Detection of Signals by Information Theoretic Criteria,” IEEE Trans. on Acoustics, Speech, and Signal Processing, vol. ASSP-33, no. 2, April 1985 [2.1] A. Graham, Kronecker Products and Matrix Calculus: with Application, Chichester: Ellis Horwood, 1981 [2.2] H. L. Van Trees, Detection, Estimation and Modulation Theory, Part IV: Optimum Array Processing, New York: Wiley, 2002 [2.3] M. Wax and T. Kailath, “Detection of Signals by Information Theoretic Criteria,” IEEE Trans. on Acoustics, Speech, and Signal Proc., vol. ASSP- 33, no. 2, April 1985 [2.4] Frost O. L., “An algorithm for linearly constrained adaptive array processing,” IEEE Trans. on Signal Processing, vol.60, pp. 926-935, Aug. 1972 [2.5] Van Veen, B. D. and Buckley, K. M., “Beamforming: a versatile approach to spatial filtering,” ASSP Magazine, IEEE, vol. 5, Issue 2, pp. 4–24, April 1988 [2.6] A. E. Bryson, Jr. and Y. C. Ho, Applied Optimum Control, Blaisdell, Waltham, MA 1969, Ch.1 [2.7] L.J. Griffiths and C.W. Jim, “An alternative approach to linearly constrained adaptive beamforming,” IEEE Trans. on Antennas and Propagation, vol. 30, pp. 27-34, Jan. 1982 [2.8] 黃克強, “廣義旁瓣消除式適應性陣列之研究,” 國立台灣大學電機工程學研究所博士論文, 1991 [2.9] 卓經綸, “運用廣義旁瓣消除器之強健式可適性波束成型技術,” 國立台灣大學電信工程學研究所碩士論文, 2001 [2.10] A.M. Haimovich and Y. Bar-Ness, “An eigenanalysis interference canceller,” IEEE Trans. on Signal Processing, vol. 39, pp. 76-84, Jan. 1991 [2.11] Wen- Liang, Hsue, Chien-Chung, Yeh, “Wideband forward-backward beamforming and its efficient computation methods,” Signal Proc., vol. 44, Issue 3, pp. 285-297, July, 1995 [2.12] Horn, R.A. and Ch. R. Johnson, Topics in Matrix Analysis, Cambridge University Press, 1991 [2.13] T.J. Shan and T. Kailath, “Adaptive beamforming for coherent signals and interference,” IEEE Trans. on Acoustics, Speech, and Signal Processing, vol. 38, no. 3, pp. 527-536, June 1985 [2.14] K.M. Duvall, “Signal cancellation phenomena in adaptive antenna: causes and cures,” IEEE Trans. on Antennas and Propagation, vol. 30, no. 3, pp. 469-478, May 1982 [3.1] W. F. Gabriel, “Spectral analysis and adaptive array supperresolution techniques,” Proc. IEEE, vol. 68, pp. 654-666, June 1980 [3.2] B. Widrow, K. M. Duvall, R. P. Gooch, and W. C. Newman, “Signal cancellation phenomena in adaptive antennas: Causes and cures,” IEEE Trans. Antennas Propagat., vol. AP-30, pp. 469-478, May 1982 [3.3] Tie-Jun Shan and T. Kailath, “Adaptive Beamforming for Coherent Signals and Interference,” IEEE Trans. on Acoustics, Speech, and Signal Processing, vol. ASSP-33, no. 3, June 1985 [3.4] Monika Agrawal, and Surendra Prasad, “Optimum broadband beamforming for coherent broadband signals and interferences,” Signal Processing, vol. 77, Issue. 1, pp. 21-36, August, 1999 [3.5] H. Akaike, “Information theory and an extension of the maximum likelihood principle,” in hoc. 2nd Int. Symp. Inform. Theory, suppl. Problems of Control and Inform. Theory, pp. 267-281, 1973 [3.6] H. Akaike, “A new look at the statistical model identification,” IEEE Trans. Automat. Contr., vol. AC-19, pp. 716-723, 1974 [3.7] G. Schwartz, “Estimating the dimension of a model,” Ann. Stat., vol. 6, pp. 461-464, 1978 [3.8] J. Rissanen, “Modeling by shortest data description,” Automatic, vol. 14, pp. 465-471, 1978 [3.9] J.E. Evans, J.R. Johnson, and D.F. Sun, “Applications of advanced signal processing techniques to angle of arrival estimation in ATC navigation and surveillance system,” Lincoln Laboratory, MIT, Lexington, MA, Tech Rep. 582, June 1982 [3.10] H. Akaike, “Information theory and an extension of the maximum likelihood principle,” in hoc. 2nd Int. Symp. Inform. Theory, suppl. Problems of Control and Inform. Theory, pp. 267-281, 1973 [3.11] H. Akaike, “A new look at the statistical model identification,” IEEE Trans. Automat. Contr., vol. AC-19, pp. 716-723, 1974 [3.12] G. Schwartz, “Estimating the dimension of a model,” Ann. Stat., vol. 6, pp. 461-464, 1978 [3.13] J. Rissanen, “Modeling by shortest data description,” Automatic, vol. 14, pp. 465-471, 1978 [3.14] M. Wax and T. Kailath, “Detection of Signals by Information Theoretic Criteria,” IEEE Trans. on Acoustics, Speech, and Signal Processing, vol. ASSP-33, no. 2, April 1985 [3.15] K. Takao and N. Kikuma, “An adaptive array utilizing an adaptive spatial averaging technique for multipath environments,” IEEE Trans. on Antennas and Propagation, vol. 35, pp. 1389-1396, Dec. 1987 [3.16] Indukumar, K.C.; Reddy, V.U., “Broad-band DOA estimation and beamforming in multipath environment,” Radar Conference, Record of the IEEE 1990 International 7-10, pp. 532–537, May 1990 [4.1] L.J. Griffiths and C.W. Jim, “An alternative approach to linearly constrained adaptive beamforming,” IEEE Trans. on Antennas and Propagation, vol. 30, pp. 27-34, Jan. 1982 [4.2] 黃克強, “廣義旁瓣消除式適應性陣列之研究,” 國立台灣大學電機工程學研究所博士論文, 1991 [4.3] 卓經綸, “運用廣義旁瓣消除器之強健式可適性波束成型技術,” 國立台灣大學電信工程學研究所碩士論文, 2001 [4.4] Wen-Liang, Hsue, Chien-Chung, Yeh, “Wideband forward-backward beamforming and its efficient computation methods,” Signal Processing vol. 44, Issue 3, pp. 285-297, July, 1995 | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/38146 | - |
| dc.description.abstract | 可適性寬頻天線陣列利用在天線陣列中的每一個感測元件及延遲元件後擺入一個可以調整的權重係數(weight),藉著調整這些係數,使得天線陣列的輸出對想要信號的入射方向有最好的增益,同時抑制干擾信號入射方向的增益或產生零增益(null),令想要信號對干擾信號加雜訊功率比(Signal to Interference plus Noise Ratio, SINR)為最大。
在論文中我們將利用二階的auto-regressive model來產生我們所需的寬頻訊號,並研究波束成形技術在此寬頻訊號遭遇信號同調(coherence)的問題。同調信號干擾會造成信號抵消現象,使得波束成型器失敗,而在傳統上有Shan與Kailath的空間平均法(Spatial Smoothing technique)及其衍生的權重式空間平均法(Weighted Spatial Smoothing)與漸進式空間平均法(Progressive Spatial Smoothing)來解決這個問題。 本文首先使用Frost提出的LCMV架構並配合上述傳統的演算法,接著主要提出TBTAM (Toeplitz-Block-Toeplitz Approximation Method)與I-TBTAM(Iteration-TBTAM)配合AIC、MDL作為最佳解決信號同調干擾問題的方法。最後引入寬頻廣義旁辦消除器架構作為比較。 | zh_TW |
| dc.description.abstract | An adaptive broadband antenna array is a collection of sensor elements and tap delay line whose outputs are combined by an iteratively adjusted combining (or weight) vector so as to pass a desired signal on desired arrival directions with minimum distortion while rejecting interfering signals which makes the maximum output SINR.
Here, we use second order auto-regressive model to generate broadband signals, and consider the beamforming technique under coherent environment that cause signal cancellation phenomena. The phenomena can cause signal loss in the case of narrowband signals, or cause significant signal distortion in the case of wideband signals. Traditionally, one method is known as spatial smoothing technique which was proposed by Shan and Kailath, and the derivational methods as weighted spatial smoothing and progressive spatial smoothing. In this paper, we use LCMV structure of Frost, and propose our method TBTAM (Toeplitz–Block-Toeplitz Approximation Method) and I-TBTAM (Iteration-TBTAM) combining with AIC,MDL method as the optimum beamforming technique under coherent environment. Finally, we present broadband general sideband canceller as compared with LCMV. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-13T16:27:01Z (GMT). No. of bitstreams: 1 ntu-94-R92942089-1.pdf: 7346154 bytes, checksum: c0ba4469ca27de41ea6dd3c729a472fd (MD5) Previous issue date: 2005 | en |
| dc.description.tableofcontents | 致謝 I
摘要 III Abstract V 目錄 VII 圖目錄 IX 表目錄 XIII 第一章 緒論 - 1 - 1.1 研究背景 - 1 - 1.2 研究動機 - 2 - 1.3 研究目的 - 2 - 1.4 論文之主要貢獻 - 3 - 1.5 論文架構 - 4 - 參考資料 - 4 - 第二章 寬頻天線陣列信號處理之數學基礎及基本概念 - 6 - 2.1 寬頻天線陣列基本架構及數學模型 - 6 - 2.2 寬頻天線陣列接收信號自相關矩陣特性 - 9 - 2.2.1 寬頻信號模型 - 9 - 2.2.2 接收信號自相關矩陣一般特性 - 9 - 2.2.3 特徵空間結構 - 13 - 2.3 可適性寬頻波束成形技術 - 15 - 2.3.1 LCMV之數學模型 - 15 - 2.3.2 GSC之數學模型 - 18 - 2.4 信號同調環境 - 24 - 2.5 信號抵消現象 - 24 - 參考資料 - 30 - 第三章 運用寬頻天線陣列之強健式波束成型器解決信號同調問題 - 32 - 3.1 簡介 - 32 - 3.2 存在同調信號時的強健式修正法 - 33 - 3.2.1 空間平均法 (Spatial Smoothing) - 33 - 3.2.2 權重式空間平均法(Weighted Spatial Smoothing) - 36 - 3.2.3 漸進式空間平均法(Progressive Spatial Smoothing) - 39 - 3.2.4 TBTAM & I-TBTAM - 42 - 3.2.5 I-TBTAM配合AIC、MDL法 - 47 - 3.3 模擬結果與比較 - 51 - 3.4 結論 - 100 - 參考資料 - 101 - 第四章 運用寬頻廣義旁辦消除器之強健式波束成型器解決信號同調問題 - 103 - 4.1 簡介 - 103 - 4.2 存在同調信號時的強健式修正法 - 104 - 4.2.1 寬頻廣義旁辦消除器之空間平均法 - 104 - 4.2.2 寬頻廣義旁辦消除器之權重式空間平均法 - 105 - 4.2.3 寬頻廣義旁辦消除器之漸進式空間平均法 - 106 - 4.2.4 寬頻廣義旁辦消除器之TBTAM & I-TBTAM - 106 - 4.2.5 寬頻廣義旁辦消除器之I-TBTAM配合AIC、MDL法 - 107 - 4.3 模擬結果與比較 - 108 - 4.4 結論 - 145 - 參考資料 - 146 - 第五章 研究結論與建議 - 147 - 5.1 研究結論 - 147 - 5.2 後續研究建議 - 147 - | |
| dc.language.iso | zh-TW | |
| dc.subject | 寬頻 | zh_TW |
| dc.subject | 波束成型 | zh_TW |
| dc.subject | 同調 | zh_TW |
| dc.subject | 可適性 | zh_TW |
| dc.subject | coherent | en |
| dc.subject | beamforming | en |
| dc.subject | broadband | en |
| dc.title | 在同調環境下的可適性寬頻波束成型技術 | zh_TW |
| dc.title | Adaptive Broadband Beamforming under Coherent Environments | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 93-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 李大嵩,王晉良,陳巽璋 | |
| dc.subject.keyword | 同調,可適性,寬頻,波束成型, | zh_TW |
| dc.subject.keyword | broadband,beamforming,coherent, | en |
| dc.relation.page | 147 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2005-07-15 | |
| 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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