博碩士論文 975201115 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:18 、訪客IP:3.139.72.152
姓名 吳尚儒(Shang-ru Wu)  查詢紙本館藏   畢業系所 電機工程學系
論文名稱 具有寬截止頻帶的帶通濾波器之研製
(Bandpass filters with wide stopband)
相關論文
★ 應用於微波之多頻帶通濾波器之設計★ 使用可開關式帶通濾波器之低相位雜訊雙頻振盪器研製
★ 共平面波導饋入槽孔偶極天線之寬頻與多頻應用★ 可具任意通帶之可調式多工器
★ 利用非對稱步階式阻抗設計寬通帶寬止帶雙工器★ 基於散佈式耦合饋入架構之可開關式帶通濾波器
★ 共平面波導饋入之寬頻雙圓極化天線★ 基於多共振路徑所設計之印刷式多頻帶天線
★ 四通道可切換式帶通濾波器之研究★ 雙模態寬阻帶之基板合成波導濾波器
★ 微小化倍頻壓抑直交分合波器之研製★ 可繞式小型偶極天線之研製
★ 使用多重模態共振器實現多功能帶通濾波器★ 應用於Radio-over-Fiber系統之超高速微波光子發射器
★ 使用長饋入線架構研製小型且具有高隔絕度的多工器★ 可調式雙模態帶通濾波器之研究
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) 本篇論文所提出步階式阻抗負載殘段共振器的架構來設計具有寬截止頻帶的帶通濾波器。首先在步階式阻抗負載殘段共振器的頻率響應分析中,將利用步階式阻抗共振器的特性如藉由調整阻抗比與電子長度比,來控制其共振器的倍頻頻率與傳輸零點頻率,再將此結果應用在設計濾波器上,可以在不使用額外的電路之下,利用本身電路的結構達到倍頻壓抑的效果,使電路面積能縮小化。將使用此共振器架構研製出兩種不同中心頻率的二階雙頻帶通濾波器,其中一種為兩通帶的中心頻率為鄰近頻帶(near band)的雙頻帶通濾波器。再利用上述的共振器研製出高階數的雙頻帶通濾波器,其中包括一個三階與兩個四階的雙頻帶通濾波器,這當中共振器之間的交錯式耦合或是反對稱式饋入來使通帶附近產生傳輸零點,使其增加通帶的選擇性。以上所述的雙頻帶通濾波器皆具有寬截止頻帶。最後繼續沿用此共振器結構,使用指叉式耦合饋入的方式研製出具有寬截止頻帶的寬頻帶通濾波器。
摘要(英) In the thesis, the proposed structure, stepped-impedance stub-loaded resonator(SISLR), is utilized in the bandpass filter featuring wide stopband. To begin with, use characteristics of SISLR to control spurious passband and transmission zeros by adjusting impedance ratio and electrical length ratio. Afterward, the results are applied to design filters. The spurious passband is suppressed by the circuit itself instead of adding extra circuit. Consequently, the size of the circuit is minimized. We will take advantage of the proposed structure to fabricate two 2nd-order dual-band bandpass filters with different fundamental frequencies. One is that two fundamental frequencies of the passband are near band, and the other is based on the above filter to develop high-order filters, including one 3rd-order and two 4th order dual-band bandpass filters. Transmission zeros near two sides of the passband result from cross coupling or asymmetric feed line; therefore, the selectivity is enhanced. As mentioned above, all of these dual-band bandpass filters possess wide stopband. Eventually, the proposed resonators can be integrated with the interdigital coupled feed line to attain wide stopband.
關鍵字(中) ★ 寬截止頻帶
★ 帶通濾波器
關鍵字(英) ★ wide stopband
★ bandpass filter
論文目次 摘要 i
Abstract ii
致謝 iii
目錄 v
圖目錄 vii
表目錄 x
第一章 序論 1
1.1 研究動機與目的 1
1.2 參考文獻回顧 2
1.3 章節內容 3
第二章 濾波器的原理與步階式阻抗共振器的應用 4
2.1 基本濾波器原理 4
2.2 耦合係數與外部品質因素 8
2.2.1 電耦合 8
2.2.2 磁耦合 10
2.2.3 混合式耦合 12
2.2.4 外部品質因素 14
2.3 步階式阻抗共振器原理 16
第三章 具有寬截止頻帶之雙頻帶通濾波器的設計與量測 19
3.1 步階式阻抗負載殘段共振器之分析 19
3.2 具有寬截止頻帶之雙頻帶通濾波器設計與量測 25
3.2.1 雙頻帶帶通濾波器設計與量測結果 25
3.2.2 鄰近頻帶雙頻帶通濾波器設計與量測結果 30
第四章 三階與四階之具有寬截止頻帶的雙頻帶通濾波器設計與量測 35
4.1三階的雙頻帶通濾波器 35
4.2四階的雙頻帶通濾波器 39
4.2.1無交錯耦合的四階濾波器 39
4.2.2四級疊接式(quadruplet)濾波器 43
第五章 具有寬截止頻帶的寬頻帶通濾波器設計與量測 48
5.1寬頻帶通濾波器 48
第六章 結論 54
參考文獻 55
附錄 59
參考文獻 [1] Y. C. Chang, C. H. Kao, M. H. Weng, and R. Y. Yang, “A novel compact dual-bandpass filter with a wide stopband using asymmtric SIRs for WLANs,” in Proc. Asia-Pacific Microw. Conf., 2008, pp. 1-4.
[2] Y. C. Chang, C. H. Kao, M. H. Weng, and R. Y. Yang, “Design of compact dual-band bandpass filter with high isolation for GPS/WLAN applications,” IEEE Microw. Wireless Compon. Lett., vol.19, no.12, pp. 780-782, Dec. 2009.
[3] Y. M. Chen, S. F. Chang, C. C. Chang, and C. Y. Chou, “A dual-band bandpass filter by interleaving heterogeneous stepped-impedance resonators,” in Proc. European Microw. Conf., 2007, pp. 854-857.
[4] C. H. Tseng and H. Y. Shao, “A new dual-band microstrip bandpass filter using net-type resonators,” IEEE Microw. Wireless Compon. Lett., vol. 20, no. 4, pp. 196-198, April. 2010.
[5] J. T. Kuo and H. P. Lin, “Dual-band bandpass filter with improved performance in extended upper rejection band,” IEEE Trans. Microw. Theory Tech., vol. 57, no. 4, pp. 824-829, April. 2009.
[6] P. Y. Hsieh, Y. C. Chiou, J. T. Kuo, and U. H. Lok, “Compact hairpin resonator bandpass filters with dual-band response and wide upper stopband,” in Proc. Asia-Pacific Microw Conf., 2009, pp. 917-920.
[7] L. Ren and H. Huang, “Dual-band bandpass filter based on dual-plane micro-strip /interdigital DGS slot structure,” Electron. Lett., vol. 45, no. 21, pp. 1077-1079, Oct. 2009.
[8] P. Mondal and A. Chakrabarty, “Compact wideband bandpass filters with wide upper stopband,” IEEE Microw. Wireless Compon. Lett., vol. 17, no. 1, pp. 31-33, Jan. 2007.
[9] Y. C. Chang, C. H. Kao, M. H. Weng, and R. Y. Yang, “Design of the compact wideband bandpass filter with low loss, high selectivity and wide stopband,” IEEE Microw. Wireless Compon. Lett., vol. 18, no. 12, pp. 770-772, Dec. 2008.
[10] M. K. Mandal and S. Sanyal, “Design of wide-band, sharp-rejection bandpass filters with parallel-coupled lines,” IEEE Microw. Wireless Compon. Lett., vol. 16, no. 11, pp. 597-599, Nov. 2006.
[11] B. Y. Yao, Y. G. Zhou, Q. S. Cao, and Y. H. Chen, “Compact UWB Bandpass Filter With Improved Upper-Stopband Performance,” IEEE Microw. Wireless Compon. Lett., vol. 19, no. 1, pp. 27-29, Jan. 2009.
[12] K. Deng, W. J. Feng, and W. Q. Che, “Novel compact wideband bandpass filter using microstrip and coplanar-waveguide resonators with good harmonic suppression,” in Proc Asia-Pacific Microwave Conf., 2009, pp. 2497-2500.
[13] C. P. Chen, Z. Ma, Y. Takakura, H. Nihei, and T. Anada, “Novel wideband bandpass filter using open-ended stub loaded parallel coupled short-circuited three-line unit,” in IEEE MTT-S Int. Microw. Sym. Dig., 2009, pp. 725-728.
[14] J. K. Lee and Y. S. Kim, “Ultra-Wideband bandpass filter with improved upper stopband performance using defected ground structure,” IEEE Microw. Wireless Compon. Lett., vol. 20, no. 6, pp. 316-318, Jan. 2010.
[15] R. Li and L. Zhu, “Ultra-wideband microstrip-slotline bandpass filter with enhanced rejection skirts and widened upper stopband,” Electron. Lett., vol. 43, no. 24, pp. 1368-1369, Nov. 2007.
[16] C. H. Kim and K. Chang, “Wideband ring resonator bandpass filter with dual stepped Impedance stubs,” in IEEE MTT-S Int. Microw. Sym. Dig., 2010, pp. 229-232.
[17] D. M. Pozar, Microwave Engoneering. John Wiley & Sons, Inc., 1998.
[18] J. S. Hong and M. J. Lancaster, Microstrip Filters for RF/Microwave Applications, New York: Wiley, 2001.
[19] M. Makimoto and S. Yamashita, “Bandpass filter using parallel coupled stripline stepped impedance resonators,” IEEE Trans. Microw. Theory Tech., vol. 28, no. 12, pp. 1413-1417, Dec. 1980.
[20] X. Y. Zhang, J. X. Chen, and Q. Xue, “Dual-band bandpass filter using stub-loaded resonators,” IEEE Microw. Wireless Compon. Lett., vol. 17, no. 8, pp. 583-585, Aug. 2007.
[21] IE3D version 11.1, Zeland software Inc., Dec. 2005.
[22] L. H. Hsieh and K. Chang, “Tunable microstrip bandpass filters with two transmission zeros,” IEEE Trans. Microw. Theory Tech., vol. 51, no. 2, pp. 520-525, Feb. 2003.
[23] Y. C. Chiou, J. T. Kuo, and E. Cheng, “Broadbnad quasi-chebyshev bandpass filter with multimode stepped-impedance resonator(SIRs),” IEEE Trans. Microw. Theory Tech., vol. 54, no. 8, pp. 3352-3358, Aug. 2006.
[24] Q. X. Chu, F. C. Chen, Z. H. Tu, and H. Wang, “A novel crossed resonator and its applications to bandpass filters,” IEEE Trans. Microw. Theory Tech., vol. 57, no. 7, pp. 1753-1759, July. 2009.
[25] W. Shen, X. W. Sun, and W. Y. Yin, “A novel microstrip filter using three-mode stepped impedance resonator (TSIR),” IEEE Microw. Wireless Compon. Lett., vol. 19, no. 12, pp. 774-776, Dec. 2009.
[26] M. Sagawa, M. Makimoto, and S. Yamashita, “Geometrical structures and fundamental characteristics of microwave stepped-impedance resonators,” IEEE Trans. Microw. Theory Tech., vol. 45, no. 7, pp. 1078-1085, July. 1997.
[27] C. F. Chen, T. Y. Huang, and R. B. Wu, “Design of microstrip bandpass filters with multiorder spurious-mode suppression,” IEEE Trans. Microw. Theory Tech., vol. 53, no. 12, pp. 3788-3793, Dec. 2005.
[28] C. F. Chen, T. Y. Huang, C. P. Chou, and R. B. Wu, “Microstrip diplexers design with common resonator sections for compact size, but high isolation,” IEEE Trans. Microw. Theory Tech., vol. 54 no. 5, pp. 1945-1952, May. 2006.
[29] B. J. Chen, T. M. Shen, and R. B. Wu, “Design of tri-band filters with improved band allocation,” IEEE Trans. Microw. Theory Tech., vol. 57, no. 7, pp. 1790-1797, July. 2009.
指導教授 凃文化(Wen-hua Tu) 審核日期 2011-8-23
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