| 研究生: |
葉璟霈 Jing-pei Yeh |
|---|---|
| 論文名稱: |
共平面波導饋入式圓極化環形單極天線之研製 Coplanar Waveguide fed Circular Polarization Slotted Annular Ring Monopole Antenna |
| 指導教授: |
丘增杰
Tsen-chieh Chiu 陳念偉 Nan-wei Chen |
| 口試委員: | |
| 學位類別: |
碩士 Master |
| 系所名稱: |
資訊電機學院 - 電機工程學系 Department of Electrical Engineering |
| 畢業學年度: | 98 |
| 語文別: | 中文 |
| 論文頁數: | 94 |
| 中文關鍵詞: | 圓極化 、單極天線 、軸比 |
| 外文關鍵詞: | axial ratio, monopole antenna, circular polarization |
| 相關次數: | 點閱:15 下載:0 |
| 分享至: |
| 查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
本論文研製一共平面圓極化開槽環形單極天線(coplanar circular polarization slotted annular ring monopole antenna),有別於常見的平面式圓極化天線,如微帶貼片天線(microstrip patch antenna)、槽孔天線(slot antenna)等,其阻抗頻寬(impedance bandwidth)受到天線結構上的限制而為單一頻段且窄頻特性,無法滿足於多頻段整合之無線通訊產品,有鑑於此,在設計上採用具有寬頻特性之單極天線作為首選。天線結構主要由共平面波導(coplanar waveguide,CPW)傳輸線與環狀開槽金屬環所組成,在圓極化頻段設計上利用環狀開槽金屬環上之環形電流路徑以及接地金屬面上非對稱電流產生之輻射,使原為線性極化(linear polarization)的單極天線具有圓極化特性。天線之10dB折返損耗(return loss)操作頻帶由1.5GHz至3GHz,阻抗頻寬約為66.7%,頻帶內涵蓋了GPS、DCS、PCS、PHS、WCDMA、Bluetooth等常用無線通訊頻段,此天線在GPS頻段下為圓極化、其餘操作頻段保有線性極化特性。此外,天線設計上可利用在接地金屬面延伸出長度約為四分之一導波波長(guide wavelength)的倒L形金屬片,藉由此金屬片增加一額外的電流路徑,改善輻射電場分量之振幅差距,設計出第二個圓極化頻段,使天線具有雙頻段圓極化特性。
The design and analysis of a planar, circularly polarized, and slotted annular ring monopole antenna are presented. In contrast to traditional planar circularly polarized patch antenna and slot antennas poised for narrowband applications, the presented antenna is of relatively broad operating bandwidth by exploiting the broadband monopole antenna structure. Specifically, the proposed antenna consists of a coplanar-waveguide (CPW) fed annular ring monopole with a gap near the CPW feed. The circular polarization is essentially realized with the circular current flow on the slotted annular ring and the unsymmetrical surface current on the ground plane. Furthermore, additional circularly polarized operation bands can be realized with the incorporation of stretched-out quarter-wavelength inverted-L sleeves on the ground plane edges. In this thesis, a single-band and a dual-band CPW-fed slotted annular ring monopole antennas are demonstrated. The single-band antenna features circular polarization at the L1 band, while the dual-band antenna is of circular polarization at the L1 band, as well as at 1.96 GHz. In addition, both antennas is of operating frequencies ranging from 1.5 GHz to 3 GHz for the GPS, DCS, PHS, WCDMA, and Bluetooth applications.
[1] C. A. Balanis, Antenna Theory Analysis and Design, New York: John Wiely & Sons, 1997.
[2] Girish Kumar and K. P. Ray, Broadband Microstrip Antennas, Boston: Artech House, 2003.
[3] J. Liang, C. C. Chiau, X. Chen, and C. G. Parini, “Printed circular disc monopole antenna for ultra-wideband applications,” Electronics Letters, vol. 40, no. 20, pp. 1246-1247, Sep. 2004.
[4] Z. N. Chen, M. J. Ammann, M.Y.W. Chia, and T. S. P. See, “Annular planar monopole antennas,” IEE Proc.-Microw. Propag., vol. 149, no. 4, pp. 624-626, Oct. 2005.
[5] Christina F. Jou, Jin-Wei Wu, and Chien-Jen Wang, “Novel broadband monopole antennas with dual-band circular polarization,” IEEE Trans. Antennas Propag., vol. 57, no. 4, pp. 1027-1034, Apr. 2009.
[6] C. C. Chou, K. H. Lin, and H. L. Su, “Broadband circularly polarised crosspatch- loaded square slot antenna,” Electronics Letters, vol. 43, no. 9, pp. 485-486, Apr. 2007.
[7] I-Chung Deng, Jin-Bo Chen, Qing-Xiang Ke, Jun-Rong Chang, Woon-Fa Chang, and Yueh-Tsu King, “A circular CPW-fed slot antenna for broadband circularly polarized radiation,” Microw. Opt. Technol. Lett., vol. 49, no. 11, pp. 2728-2733, Nov. 2007.
[8] C. J. Wang and Y. C. Lin, “New CPW-fed monopole antennas with both linear and circular polarisations,” IET Microw. Antennas Propag., vol. 2, no. 5, pp. 466-472, 2008.
[9] C. P. Wen, “Coplannar waveguide : A surface strip transmission line suitable for nonreciprocal gyromagnetic device application,” IEEE Trans. Microw. Theory Tech., vol. 17, no. 12, Dec. 1969.
[10] W. L. Stutzman and G. A. Thiele, Antenna theory and design, 2nd ed. New York: John Wiley & Sons, 1998.
[11] G. Dubost and S. Zisler, “Antennas a Large Band,” New York: Masson, pp. 128-129, 1976.
[12] H. Nakano and J. Yamauchi, “Axial Ratios of Spiral Antennas,” IEEE Antennas and Propagation Society International Symposium, vol. 19, pp 679-682, 1981.
[13] IEEE Standard Test Procedures for Antennas, IEEE Standard 149, 1979.
[14] Bee Yen Toh, Robert Cahill, and Vincent F. Fusco, “Understanding and measuring circular polarization,” IEEE Trans. Education, vol. 46, no. 3, Aug. 2003.
[15] M. Houdart and C. Aury, “Various excitations of coplanar waveguide,” IEEE MTT-S Digest, pp. 116-118, 1979.