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一種寬頻帶復合天線(xiàn)設計
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中華通信系統有限責任公司河北分公司

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Design of A WidebandCompoundAntenna
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    摘要:

    針對多系統載體天線(xiàn)數量多的問(wèn)題,提出了一種基于印刷振子結構的寬頻帶共口徑復合天線(xiàn)設計方法。通過(guò)兩種不同形式的印刷偶極子進(jìn)行共口徑設計:采用平面印刷偶極子結構完成寬帶高增益線(xiàn)極化天線(xiàn),通過(guò)寬帶定向耦合器實(shí)現了天線(xiàn)和差方向圖輻射;采用十字印刷偶極子實(shí)現低增益天線(xiàn)的圓極化輻射。兩種天線(xiàn)單元印刷在同一微波介質(zhì)上,通過(guò)優(yōu)化天線(xiàn)單元布局,相對位置關(guān)系和增加金屬隔離環(huán)等措施,降低天線(xiàn)之間的相互影響,實(shí)現共口徑復合天線(xiàn)性能滿(mǎn)足工程應用要求。加工了天線(xiàn)樣機,測試結果表明線(xiàn)極化天線(xiàn)在工作頻帶1.2GHz~1.8GHz范圍內和差通道電壓駐波比小于1.8,和通道增益大于13.5dBi,方位差波束零值深度小于-25dB,圓極化天線(xiàn)在工作頻帶1.2GHz~1.8GHz范圍內電壓駐波比小于1.6,增益大于6.5dBi,軸比小于2.5dB,與計算結果基本一致。復合天線(xiàn)可以滿(mǎn)足多種無(wú)線(xiàn)通信系統的需求,減少了天線(xiàn)數量,有效節省載體平臺空間,同時(shí)具有結構簡(jiǎn)單緊湊,剖面低、易于工程實(shí)現等特點(diǎn),具有廣闊的應用前景。

    Abstract:

    This paper presents a design method for addressing the challenge of accommodating a large number of multi-system carrier antennas by proposing a wideband shared aperture compound antenna based on a printed dipole structure. The shared aperture design incorporates two distinct forms of printed dipoles: a planar printed dipole for achieving a wideband high-gain linear polarization antenna with a wideband directional coupler for sun-difference pattern radiation, and a cross dipole low-gain antenna for circular polarization radiation. These antenna elements are printed on the same microwave dielectric substrate, and the mutual interference between them is mitigated through techniques including antenna unit layout optimization, relative positioning, and the use of isolation rings. The test results show that the VSWR is less than 1.8, the gain is greater than 13.5dBi, the azimuth difference beam zero depth is less than -25dB of the linear polarized antenna in the range of 1.2GHz ~ 1.8GHz; and the VSWR is less than 1.6, the gain is more than 6.5dBi, the axial ratio is less than 2.5dB of the circularly polarized antenna in the range of 1.2GHz ~ 1.8GHz. The proposed design is capable of fulfilling the requirements of various wireless communication systems by reducing the number of antennas, thereby effectively saving space on the carrier platform. The compound antenna holds great potential for diverse applications, thanks to its simple and compact structure, low profile, and ease of engineering implementation.

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王亮,趙東賀,韓國棟.一種寬頻帶復合天線(xiàn)設計計算機測量與控制[J].,2024,32(3):273-279.

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  • 收稿日期:2023-07-10
  • 最后修改日期:2023-09-10
  • 錄用日期:2023-09-11
  • 在線(xiàn)發(fā)布日期: 2024-04-01
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