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$W$-Band Low-Profile Monopulse Slot Array Antenna Based on Gap Waveguide Corporate-Feed Network

机译: $ W $ -基于间隙波导企业馈电网络的薄型薄型单脉冲缝隙阵列天线

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This paper presents a gap waveguide-based compact monopulse array antenna, which is formed with four unconnected layers, for millimeter-wave tracking applications at$W$-band (85–105 GHz). Recently developed gap waveguide technology removes the need for galvanic contact among metallic layers of waveguide structures, and thereby, makes the proposed antenna suitable for easy and low-cost manufacturing. In this context, a low-loss planar Magic-Tee is designed to be used in a monopulse comparator network consisting of two vertically stacked layers. The gap waveguide planar monopulse comparator network is integrated with a high-efficiency$16imes 16$corporate-fed slot array antenna. The measured results of the comparator network show the amplitude and phase imbalance values to be less than 0.5 dB and 2°, respectively, over the frequency band of interest. The fabricated monopulse array antenna shows relative impedance bandwidths of 21% with input reflection coefficients better than −10 dB for the sum and difference ports. The null in the difference radiation pattern is measured to be 38 dB below the peak of the sum radiation pattern at 94 GHz. The measured gain is about 30 dBi for the same frequency. The low-loss performance of the comparator network and the feed network of the proposed array, together with the simple and easy manufacturing and mechanical assembly, makes it an excellent candidate for$W$-band compact direction-finding systems.
机译:本文介绍了一种基于间隙波导的紧凑型单脉冲阵列天线,该天线由四个未连接的层组成,用于毫米波跟踪应用,位于 n $ W $ n波段(85–105 GHz)。最近开发的间隙波导技术消除了在波导结构的金属层之间的电流接触的需要,从而使所提出的天线适合于容易且低成本的制造。在这种情况下,一种低损耗的平面Magic-Tee设计用于在由两个垂直堆叠的层组成的单脉冲比较器网络中。间隙波导平面单脉冲比较器网络与高效集成 n <直列式xmlns:mml = “ http://www.w3.org/1998/Math/MathML ” xmlns:xlink = “ http ://www.w3.org/1999/xlink “> $ 16 times 16 $ ncorporate-fed slot阵列天线。比较器网络的测量结果表明,在感兴趣的频带上,幅度和相位不平衡值分别小于0.5 dB和2°。所制造的单脉冲阵列天线显示出21%的相对阻抗带宽,总和和差分端口的输入反射系数均优于-10 dB。差分辐射图的零点被测量为比94 GHz时总辐射图的峰值低38 dB。对于相同的频率,测得的增益约为30 dBi。拟议的阵列的比较器网络和馈送网络的低损耗性能,以及简单容易的制造和机械组装,使其成为 n $ W $ n波段紧凑型测向系统。

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