{"title":"面向 5G 应用的宽带双极化平行板波导透镜天线","authors":"Yang Cheng;Yuandan Dong","doi":"10.1109/TAP.2024.3455786","DOIUrl":null,"url":null,"abstract":"This article proposes a mechanically scanned, broadband, low-cost, dual-polarized parallel-plate lens antenna (PPLA). The dominant TM0 mode and the higher order TE1 mode are utilized to achieve dual-polarized radiation. Drawing on the theory of constant refractive index lenses, we initially fill the parallel-plate waveguide with a material of uniform refractive index to ensure beam focusing for vertical polarization (TM0 mode). Subsequently, by adjusting the waveguide spacing—a modification that does not affect the effective refractive index for vertical polarization—we align the effective refractive index for horizontal polarization closely with that of vertical polarization, thereby maintaining relative stability and achieving beam focusing for the horizontal polarization. This approach obviates the need for gradient refractive index materials, thus substantially reducing design complexity and manufacturing costs. To validate our proposed concept, we designed, fabricated, and tested a transmission-type circular PPLA and a reflection-type semicircular PPLA. The test results demonstrate that the impedance bandwidth of the proposed lens antenna can cover the entire Ka-band and potentially extend to even higher frequency bands. Moreover, the peak gain of the antenna increases with frequency within the Ka-band. The proposed antenna offers wideband, dual-polarization, and high-gain radiation characteristics. 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引用次数: 0
摘要
本文提出了一种机械扫描、宽带、低成本、双极化平行板透镜天线(PPLA)。利用主要的 TM0 模式和高阶的 TE1 模式实现双极化辐射。借鉴恒定折射率透镜理论,我们首先在平行板波导中填充均匀折射率材料,以确保垂直极化(TM0 模式)的光束聚焦。随后,通过调整波导间距--这种调整不会影响垂直偏振的有效折射率--使水平偏振的有效折射率与垂直偏振的有效折射率接近,从而保持相对稳定性,实现水平偏振的光束聚焦。这种方法无需使用梯度折射率材料,从而大大降低了设计复杂性和制造成本。为了验证我们提出的概念,我们设计、制造并测试了透射型圆形 PPLA 和反射型半圆形 PPLA。测试结果表明,拟议的透镜天线的阻抗带宽可覆盖整个 Ka 波段,并有可能扩展到更高的频段。此外,在 Ka 波段内,天线的峰值增益随着频率的增加而增加。拟议的天线具有宽带、双极化和高增益辐射特性。此外,它结构简单、成本低、外形小巧,非常适合 5G 毫米波(mm-wave)通信应用。
Wideband Dual-Polarized Parallel-Plate Waveguide Lens Antenna for 5G Applications
This article proposes a mechanically scanned, broadband, low-cost, dual-polarized parallel-plate lens antenna (PPLA). The dominant TM0 mode and the higher order TE1 mode are utilized to achieve dual-polarized radiation. Drawing on the theory of constant refractive index lenses, we initially fill the parallel-plate waveguide with a material of uniform refractive index to ensure beam focusing for vertical polarization (TM0 mode). Subsequently, by adjusting the waveguide spacing—a modification that does not affect the effective refractive index for vertical polarization—we align the effective refractive index for horizontal polarization closely with that of vertical polarization, thereby maintaining relative stability and achieving beam focusing for the horizontal polarization. This approach obviates the need for gradient refractive index materials, thus substantially reducing design complexity and manufacturing costs. To validate our proposed concept, we designed, fabricated, and tested a transmission-type circular PPLA and a reflection-type semicircular PPLA. The test results demonstrate that the impedance bandwidth of the proposed lens antenna can cover the entire Ka-band and potentially extend to even higher frequency bands. Moreover, the peak gain of the antenna increases with frequency within the Ka-band. The proposed antenna offers wideband, dual-polarization, and high-gain radiation characteristics. Additionally, it boasts a simple structure, low cost, and a low profile, rendering it highly suitable for 5G millimeter-wave (mm-wave) communication applications.
期刊介绍:
IEEE Transactions on Antennas and Propagation includes theoretical and experimental advances in antennas, including design and development, and in the propagation of electromagnetic waves, including scattering, diffraction, and interaction with continuous media; and applications pertaining to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques