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姓名 陳德興(Te-Hsing Chen)  查詢紙本館藏   畢業系所 電機工程學系在職專班
論文名稱 共平面波導寬頻圓型極化槽孔天線
(Coplanar Waveguide Fed Broadband Circularly Polarized Square Slot Antenna)
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摘要(中) 本論文主要提出一種新型結構,製作在單一層面的金屬介質基板RF4板材上。首先以單頻共平面波導槽孔天線做研習,之後設計出具有寬頻圓極化共平面波導(CPW)饋入槽孔天線。利用接地金屬環狀不對稱,使其電流分佈能激發出相鄰共振模態產生寬頻帶作用,在接地金屬環狀左內側彎沿出C形殘段,提供另一電流路徑使電場能有正交、等振幅以及90°相位差,在遠場輻射圓極化波,在接地金屬環狀右下角落嵌入一C形槽孔,以改善3-dB軸比頻帶寬度及10-dB阻抗頻寬。天線主體包含有共平面波導饋入線、輻射金屬貼片、非對稱接地金屬貼片、C形殘段及槽孔結構。量測結果,天線10-dB阻抗頻寬(VSWR 2)有0.92 GHz (46% 1.33-2.25 GHz), 3-dB軸比(AR)頻寬有0.65 GHz (32.5% 1.55-2.2 GHz),最大增益為 3.31 dBi變化範圍在1 dBi內,適合一般無線通訊產品(1.71-2.17 GHz)及導航系統(1.57-1.61 GHz)。
摘要(英) This thesis describes the design with simplification structure and fabrication on the same plane of FR-4 substrate. At first studying the single band CPW-fed slot antenna, and then designing of proposed broadband circular polarization CPW-fed slot antenna, which is achieved by an asymmetry ground plane makes the adjacent resonant mode to merge into a wide operation bandwidth and etching C-shaped ground strip on the edge of left side of ground plane to offer the current path, two orthogonal electric fields with a 90°phase difference for exciting a circular polarization radiation wave. On the other hand, a C-shaped slot is embedded at the bottom right corner of ground plane. It is used for broadband AR and impedance matching. The measured impedance bandwidth (VSWR 2) is 0.92 GHz (46% relative to the center frequency at 2 GHz). The 3-dB axial ratio bandwidth (ARBW) is 0.65 GHz (32.5% relative to the center frequency at 2 GHz), and antenna peak gain is 3.31 dBi with variations of less than 1 dBi. This antenna is suitable for wireless communication system (1.71-2.17 GHz) and navigation system (1.57-1.61 GHz).
關鍵字(中) ★ 寬頻帶
★ 圓極化
★ 共平面波導
★ 軸比
★ 槽孔天線
關鍵字(英) ★ Broadband
★ circularly polarized
★ coplanar waveguide
★ axial ratio
★ slot antenna
論文目次 摘要 I
ABSTRACT II
致謝 III
目錄 IV
圖目錄 VII
表目錄 XII
第一章 緒論 1
1-1 研究動機 1
1-2 文獻回顧 3
1-3 章節介紹 9
第二章 天線原理及應用 10
2-1 傳輸線與共平面波導結構[23]-[24] 10
2-2 偶極天線介紹[26]-[27] 12
2-3 電磁波極化 16
2-3.1 線性極化 16
2-3.2 圓極化 16
2-3.3 橢圓極化 17
2-4 天線設計流程 19
第三章 共平面波導饋入寬頻圓極化槽孔天線使用C形結構與分析 21
3-1 共平面波導饋入槽孔天線結構與參數分析 23
3-1.1 天線一,輻射金屬貼片Fl間隙之分析 27
3-1.2 天線一,輻射金屬貼片Pl長度與Pw寬度之分析 28
3-1.3 結論 29
3-2 天線二,非對稱接地金屬環狀結構與參數分析 30
3-2.1 非對稱接地金屬環狀Sl 參數之分析 30
3-2.1 結論 31
3-3 天線三,C形殘段(tuning stub)結構與參數分析[18] 32
3-3.1 天線三,C形殘段Cs參數之分析 32
3-3.2 天線三,C形殘段Cg參數之分析 34
3-3.3 天線三,C形殘段Cw參數之分析 35
3-3.4 天線三,C形殘段Cl參數之分析 36
3-3.5 天線三,C形殘段Cd參數之分析 37
3-3.6 結論 38
3-4 天線四,C形槽孔結構與參數分析[19] 39
3-4.1 天線四,C形槽孔Sc參數之分析 40
3-4.2 天線四,C形槽孔Lr參數之分析 41
3-4.3 天線四,C形槽孔Lb參數之分析 41
3-4.4 結論 42
3-5 天線五,C形結構參數分析 43
3-5.1 天線五,C形槽孔Sc參數之分析 43
3-5.2 天線五,C形槽孔Lr參數之分析 45
3-5.3 天線五,C形槽孔Lb參數之分析 46
3-5.4 結論 48
3-6 天線量測與比較 49
第四章 共平面波導饋入寬頻圓極化槽孔天線使用倒L形接地殘段結構與分析 58
4-1 共平面波導饋入槽孔天線結構與參數分析 58
4-1.1 阻抗轉換器Fl與Fn參數分析 59
4-1.2 倒L形殘段Lv,Lh及Lg參數分析[18]-[19] 61
4-1.3 結論 64
4-2 天線量測與比較 65
第五章 結論 71
參考文獻 73
附錄 天線輻射場型量測步驟 77
參考文獻 [1] Santiago Sierra-Garcia and Jean-Jacques Laurin, “Study of a CPW inductively coupled slot antenna,” IEEE Trans. Antennas Propaga., vol. 47, no. 1, pp. 58–64, Jan. 1999.
[2] A. U. Bhobe, A. L. Holloway, M. Piket-May, and R. Hall, “Coplanar waveguide fed wideband slot antenna,” Electron. Lett., vol. 36, pp. 1340–1342, 2000.
[3] H.-D. Chen, “Broadband CPW-fed square slot antennas with a widened tuning stub,” IEEE Trans. Antennas Propag., vol. 51, no. 8, pp. 1982–1986, Aug. 2003.
[4] M.-J. Chiang, T.-F. Hung, J.-Y. Sze, and S.-S. Bor, “Miniaturized dual-band CPW-fed slot antenna design with arc-shaped tuning stub,” IEEE Trans. Antennas Propaga., vol. 58, no. 11, pp. 3710–3715, Nov. 2010.
[5] J.-S. Chen, “Dual-frequency annular-ring slot antennas fed by CPW feed and microstrip line feed,” IEEE Trans. Antennas Propaga., vol. 53, no. 1, pp. 569–573, Jan. 2005.
[6] S.-Y. Chen and P. Hsu, “Broad-band radial slot antenna fed by coplanar waveguide for dual-frequency operation,” IEEE Trans. Antennas Propag., vol. 53, no. 11, pp. 3448–3452, Nov. 2005.
[7] J.-Y. Jan and J.-W. Su, “Bandwidth enhancement of a printed wide-slot antenna with a rotated slot,” IEEE Trans. Antennas Propag., vol. 53, no. 6, pp. 2111–2114, Jun. 2005.
[8] Y. F. Liu, L. L. Lau, Q. Xue, and C. H. Chan, “Experimental studies of printed wide-slot antenna for wide-band applications,” IEEE Antennas Wireless Propag. Lett., vol. 3, pp. 273–275, 2004.
[9] T.-G. Ma and C.-H. Tseng, “An ultrawideband coplanar waveguide-fed tapered ring slot antenna,” IEEE Trans. Antennas Propag., vol. 54, no. 4, pp. 1105–1110, Apr. 2006.
[10] J.-Y Chiou, J.-Y. Sze, and K.-L. Wong, “A broad-band CPW-fed strip-loaded square slot antenna,” IEEE Trans. Antennas Propag., vol. 51, no. 4, pp. 719–721, April. 2003.
[11] J.-Y. Sze and K.-L. Wong, “Bandwidth enhancement of a microstrip-line-fed printed wide-slot antenna,” IEEE Trans. Antennas Propag., vol. 49, no. 7, pp. 1020–1024, Jul. 2001.
[12] J. F. Huang and C. W. Kuo, “CPW-fed bow-tie slot antenna,” Micorwave Opt. Technol. Lett., vol. 19, pp. 358–360, 1998.
[13] X. M. Qing and Y. W. M. Chia, “Broadband circularly polarized slot loop antenna fed by three-stub hybrid coupler Design,” Electron. Lett., vol. 35, pp. 1210–1211, May. 1999.
[14] X. Ding and A. F. Jacob, “CPW-fed slot antenna with wide radiating aperatures,” IEE Pro.-Microw. Antennas Propag., vol. 145, no. 1, pp. 104–108, Feb. 1998.
[15] R. M. Sorbello and A. I. Zaghloul, “Wideband high efficiency circularly polarized slot antenna elements,” 1989 IEEE AP-S Int. Symp. Dig., pp. 1473-1476.
[16] T.-N. Chang and C.-P. Wu, “Microstripline-fed circularly-polarized aperture antenna,” 1999 IEEE AP-S Int. Symp. Dig., pp. 1372-1375.
[17] J.-Y. Sze, K.-L. Wong, and C.-C. Huang, “Coplanar waveguide-fed square slot antenna for broadband circularly polarized radiation” IEEE Trans. Antennas Propag., vol. 51, no. 8, pp. 2141-2144, Aug. 2003.
[18] Y.-Y. Chen, Y.-C. Jiao, C. Chao, F. Zhang, and Y. Tian, “Dual-band dual-sense circularly polarized slot antenna with a C-shaped ground strip,” IEEE Antennas Wireless Propag. Lett., vol. 10, pp. 915–918, Oct. 2008.
[19] J.-Y. Sze and C.-C. Chang, “Circularly polarized square slot antenna with a pair of inverted-L grounded strips,” IEEE Antennas Wireless Propag. Lett., vol. 7, pp. 149–151, Mar. 2008.
[20] J.-Y. Sze, J.-C. Wang, and C.-C. Chang, “Axial-ratio bandwidth enhancement of asymmetric-CPW-fed circularly polarized square slot antenna,” Electron. Lett., vol. 44, pp. 1048–1049, Aug. 2008.
[21] J.-Y. Sze and S.-P. Pan, “Design of CPW-fed circularly polarized slot antenna with a miniature configuration,” IEEE Antennas Wireless Propag. Lett., vol. 10, pp. 1465–1468, 2011.
[22] S.-L. Yang, A.-A. Kishk, and K.-F. Lee, “Wideband circularly polarized antenna with L-shaped slot,” IEEE Trans. Antennas Propag., vol. 56, no. 6, pp. 1780–1783, Jun. 2008.
[23] S. Chaimool, S. Kerdsumang, P. Akkraeadrhalin and V. Vivek, “A broadband CPW-fed square slot antenna using loading metallic strips and a widened tuning stub,” ISCIT, pp. 730–733, Oct. 2004.
[24] C.P. Wen, “Coplanar waveguide: a surface strip transmission line suitable for nonreciprocal gyromagnetic device application,” IEEE Trans. Microw. Theory Tech., vol. MTT-17, no. 12, pp. 1087–1090, Dec. 1969.
[25] K. C. Gupta, Ramesh Garg, Inder Bahl and Prakash Bhartia, Microstrip Lines and Slotlines, Artech House Boston.london, pp. 375-399, 1996.
[26] C. A. Balanis, Antenna Theorey Analysis and Design, 3rd ed. New York: Wilet 2005.
[27] R. Waterhouse, Printed Antennas for Wireless Communications, 1st ed. Hoboken, NJ: Wiley 2007.
[28] H. Nakano and J. Yamauchi, “Axial Ratios of Spiral Antennas,” IEEE Antennas and Propagation Society International Symposium, Vol. 19, pp 679-682, 1981.
[29] IEEE Standard test procedures for Antennas, IEEE Standard 149, 1979.
[30] Bee Yen Toh, Robert Cahill, and Vincent F. Fusco, “Understanding and measuring circular polarization,” IEEE Trans. Education, vol. 46, no. 3, pp. 313-318, Aug. 2003.
[31] R. Azadegan and K. Sarabandi, “A novel approach for miniaturization of slot antenna,” IEEE Trans. Antennas Propag., vol. 51, no. 3, pp. 421–429, Mar. 2003.
[32] X. L. Bao and M. J. Ammann, “Dual-frequency circularly-polarized patch antenna with compact size and small frequency ratio,” IEEE Trans. Antenna Propag., vol. 55, no. 7, pp. 2104–2107, Jul. 2007.
指導教授 凃文化(We-Hua Tu) 審核日期 2013-8-21
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