博碩士論文 108521066 詳細資訊




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姓名 張瑞凱(Rui-Kai Zhang)  查詢紙本館藏   畢業系所 電機工程學系
論文名稱 利用不規則形狀反射板之寬頻圓極化孔徑天線設計
(Design of Broadband Circularly Polarized Aperture Antenna using Reflector of Irregular Shape)
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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]   至系統瀏覽論文 (2026-7-1以後開放)
摘要(中) 本論文提出利用不規則形狀反射板之寬頻圓極化孔徑天線設計。天線由L形結構饋入矩形孔徑和L形寄生元件所組合而成,藉由L形饋入結構,從而產生圓極化。L形饋入結構加入矩形金屬與殘段,從而拓寬阻抗頻寬;使用L形寄生元件與擾動結構,產生五個圓極化模態,從而拓寬軸比頻寬。最後在孔徑天線下方加入反射板,用以提高天線增益,除此之外,不規則形狀能降低天線剖面厚度。本論文設計於Ka頻段(26.50-40.00 GHz)。
論文中天線的設計使用台灣半導體研究中心RO4003板製程製作,天線厚度為0.125λ0(λ0為26.5GHz的自由空間波長)。量測結果顯示|S11|頻寬36.13%(27.76 GHz-40.00 GHz),3-dB軸比頻寬18.20%(26.71 GHz-32.06 GHz)和4.43%(34.61 GHz-36.18 GHz),天線峰值增益7.97 dBi,所提出之天線在各個模態中皆為右手圓極化輻射。
摘要(英) The thesis proposes the broadband circularly polarized aperture antenna using a reflector of irregular shape. The antenna is composed of L-shaped structure feeding a rectangular aperture and L-shaped parasitic element. Circular polarization is achieved due to the L-shaped feeding structure. Also, adding rectangular metal and stubs to the feeding structure can enhance the impedance bandwidth. By using the L-shaped parasitic element and perturbative structure can produce five circular polarization modes, thereby enhancing the axial-ratio bandwidth. Finally, a reflector is added under the aperture antenna to increase the antenna gain. In addition, the irregular shape of the reflector can reduce the thickness of the antenna profile. The proposed design accommodates the frequency band 26.5 GHz-40.0 GHz of Ka band.
The proposed designs in the thesis use the RO4003 board process from Taiwan Semiconductor Research Institute, and the antenna thickness is 0.125λ0 (λ0 is the free space wavelength of 26.5 GHz). The measured results show that |S11| bandwidth is 36.13% (27.76 GHz-40.00GHz), the 3-dB axial ratio bandwidths are 18.20% (26.71 GHz-32.06 GHz) and 4.43%( 34.61 GHz-36.18 GHz), and the peak gain is 7.97 dBic. The proposed antenna is right-handed circularly polarized in all modes.
關鍵字(中) ★ 寬頻
★ 圓極化
★ 孔徑天線
★ 反射板
關鍵字(英) ★ Broadband
★ Circularly Polarized
★ Aperture Antenna
★ Reflector
論文目次 摘要 i
Abstract ii
誌謝 iii
目錄 iv
圖目錄 vi
表目錄 ix
第一章 序論 1
1-1研究動機 1
1-2 文獻回顧 2
1-3 章節介紹 9
第二章 寬頻圓極化孔徑天線設計與分析 10
2-1簡介 10
2-2 寬頻圓極化天線結構與演進 10
2-2-1 天線設計理念 10
2-2-2 天線結構 10
2-2-3 天線演進 12
2-2-4 天線電流分佈圖 14
2-3天線參數分析與討論 16
2-3-1 饋入結構之矩形金屬長度(a2)影響 16
2-3-2 饋入結構之矩形金屬寬度(k3)影響 17
2-3-3 饋入結構之矩形金屬寬度(s2)影響 18
2-3-4 饋入結構末端之缺口寬度(s4)影響 19
2-3-5 饋入結構末端之殘段長度(k2)影響 20
2-4 天線模擬與量測 21
2-5 結論 27
第三章 利用反射板之寬頻圓極化孔徑天線設計與分析 28
3-1簡介 28
3-2利用反射板之寬頻圓極化孔徑天線結構與演進 28
3-2-1 反射板概述 28
3-2-2 天線結構 29
3-2-3 天線演進 33
3-2-4 天線電流分佈圖 38
3-3天線參數分析與討論 43
3-3-1 寄生元件之矩形金屬長度(c1)影響 43
3-3-2擾動結構之殘段長度(d5)影響 44
3-3-3 反射板之矩形槽孔寬度(r2)影響 45
3-3-4 反射板之矩形槽孔寬度(r4)影響 46
3-3-5 反射板之矩形槽孔寬長度(r9)影響 47
3-4天線模擬與量測 48
3-5結論 59
第四章 結論 60
參考文獻 61
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[10] M. S. Ellis, Z. Zhao, J. Wu, X. Ding, Z. Nie and Q. H. Liu, “A novel simple and compact microstrip-fed circularly polarized wide slot antenna with wide axial ratio bandwidth for C-band applications,” IEEE Trans. Antennas Propag., vol. 64, pp.1552-1555, Apr. 2016.
[11] R. Xu, J. Li, Y. X. Qi, G. W. Yang and J. J. Yang, “A design of triple-wideband triple-sense circularly polarized square slot antenna,” IEEE Antennas and Wireless Propag. Lett., vol. 16, pp.1763-1766, 2017.
[12] K. O. Gyasi, G. Wen, D. Inserra, E. A. Affum, Y. Huang, J. Li, M. A. Basit and H. Zhang “A compact broadband circularly polarized slot antenna with two linked rectangular slots and an inverted-F feed line,” IEEE Trans. Antennas Propag., vol. 66, pp.7374-7377, Dec. 2018.
[13] G. Feng, L. Chen, X. Xue and X. Shi “Broadband circularly polarized crossed-dipole antenna with a single asymmetrical cross-loop,” IEEE Antennas and Wireless Propag. Lett., vol. 16, pp.7374-7377, 2017.
[14] S. P. Pan, J. Y. Sze and P. J. Tu “Circularly polarized square slot antenna with a largely enhanced axial-ratio bandwidth,” IEEE Antennas and Wireless Propag. Lett., vol. 11, pp.969-972, 2012.
[15] T. Mcpherson, Z. Iqbal and S. Lim “A wideband, circularly polarized, directive antenna with a circular reflector,” IEEE Access, vol. 11, pp.177703 -177712, 2019.
指導教授 丘增杰(Tsen-Chieh Chiu) 審核日期 2021-7-20
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