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Wideband, Wide-Scan Planar Array of Connected Slots Loaded With Artificial Dielectric Superstrates

机译:连接槽的宽带,宽扫描平面阵列,上面装有人造介电板

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Microwave broadband wide-scan antenna arrays are typically implemented resorting to vertical arrangements of printed circuit boards (PCBs). Here, we propose a planar solution realized with a single multi-layer PCB, with consequent reduction in cost and complexity of the array. It consists of an array of connected slots backed by a metallic reflector and loaded with superstrates. Artificial dielectric layers (ADLs) are used in place of real dielectrics to realize the superstrates, as they are characterized by very low surface-wave losses. For the unit-cell design, we developed an analysis tool based on closed-form expressions and thus requiring minimal computational resources. Finite-array simulations are also performed by generalizing the analysis method to account for the truncation effects. The presence of the ADL superstrate allows reducing the distance between the array plane and the backing reflector while maintaining good matching performance. A realistic feed structure is also proposed, which consists of a microstrip line connected to a coaxial feed. Such a solution does not require balanced-to-unbalanced transitions, which often limit the achievable bandwidth. The proposed structure achieves in simulations more than an octave bandwidth (6.5–14.5 GHz), within a scanning range of ° in all azimuth planes.
机译:微波宽带宽扫描天线阵列通常依靠印刷电路板(PCB)的垂直排列来实现。在这里,我们提出了一种利用单个多层PCB实现的平面解决方案,从而降低了阵列的成本和复杂性。它由一系列连接的插槽组成,这些插槽由金属反射镜支持,并装有上层板。人造介电层(ADL)代替了真正的介电层来实现上覆层,因为它们的特征在于非常低的表面波损耗。对于单元格设计,我们开发了一种基于封闭形式表达式的分析工具,因此需要最少的计算资源。通过概括分析方法以解决截断效应,还可以进行有限阵列模拟。 ADL覆盖层的存在可以减小阵列平面和背衬反射器之间的距离,同时保持良好的匹配性能。还提出了一种现实的馈电结构,该结构由连接到同轴馈电的微带线组成。这种解决方案不需要平衡到不平衡的过渡,这通常会限制可实现的带宽。拟议的结构在所有方位平面内的°扫描范围内,在模拟中实现的带宽超过倍频程(6.5-14.5 GHz)。

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