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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Flexible millimeter-wave Butler matrix based on the low-loss substrate integrated suspended line patch hybrid coupler with arbitrary phase difference and coupling coefficient
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Flexible millimeter-wave Butler matrix based on the low-loss substrate integrated suspended line patch hybrid coupler with arbitrary phase difference and coupling coefficient

机译:基于低损耗基板的柔性毫米波管矩阵集成悬挂线贴片混合耦合器,具有任意相位差和耦合系数

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摘要

In this paper, a millimeter-wave Butler matrix with flexible phase differences is proposed using the substrate integrated suspended line technology. To begin with, a low-loss substrate integrated suspended line (SISL) circular patch coupler consisting of four circular sectors is presented, achieving arbitrary phase difference and coupling coefficient by adjusting the angle and radii of the sectors. Based on the proposed coupler, two prototypes of the SISL Butler matrix are designed, fabricated and measured for the demonstration. In prototype Ⅰ, the crossovers are removed and a flexible phase difference is obtained with an area size of 2.5 λ_g × 2.8 λ_g. In prototype Ⅱ, both the crossovers and 45 phase shifters are removed and the phase differences of ±45° and ±135° are obtained with an area size of 1.86 λ_g × 2.24 λ_g. Low crosstalk between components and minimal radiation loss can be achieved by the SISL self-packaged characteristic and electromagnetic shielding. For both prototypes, the measured insertion losses are less than 2 dB at 26 GHz, including the loss of transitions and connectors, and the measured phase errors are less than ±10° within a bandwidth of more than 10%. The proposed Butler matrix shows the advantages of compact size, low loss and high integration.
机译:本文采用基板集成悬挂线技术提出了一种具有柔性相差的毫米波管矩阵。首先,通过调整扇区的角度和半径来呈现由四个圆形扇区组成的低损耗基板集成的悬挂线(SISL)圆形耦合器,通过调整扇区的角度和半径来实现任意相位差和耦合系数。基于所提出的耦合器,设计,制造和测量SISL管矩阵的两个原型,用于演示。在原型Ⅰ中,除了区域尺寸为2.5λ_g×2.8λ_g的区域差异,突出了柔性相位差。在原型Ⅱ中,除去横梁和45相移器,±45°和±135°的相差,面积尺寸为1.86λ_g×2.24λ_g。通过SISL自封装特性和电磁屏蔽可以实现部件和最小辐射损失之间的低串扰。对于两个原型,测量的插入损耗在26GHz处小于2 dB,包括过渡和连接器的损耗,测量的相位误差在带宽范围内小于±10°,超过10%。建议的巴特勒矩阵显示了尺寸紧凑,低损耗和高集成度的优点。

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