不同介电材料对用于 6G 通信系统的开槽贴片天线辐射特性的影响

B. G. Hakanoglu
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摘要

本研究针对 6G 通信系统研究了具有菱形槽的贴片天线结构。天线选择了四种不同的介质材料,如阿龙、聚酰胺、聚酰亚胺和硅,并采用相同的设计程序。通过这种方法,研究了槽对不同介质基底频率响应的影响。根据边缘尺寸和位置对槽进行了参数分析,并完成了具有最低回波损耗水平值的设计。阿龙和聚酰胺开槽天线的回波损耗分别降低了 38% 和 42%,而聚酰亚胺和硅的回波损耗分别降低了 28% 和 8%。此外,开槽天线带宽的增加因介质基底材料而异。阿龙、聚酰胺、聚酰亚胺和硅衬底的带宽增幅分别为 0.05 GHz、0.426 GHz、0.839 GHz 和 0.475 GHz。通过这些研究结果,研究人员可以深入了解材料对 6G 频段天线特性的影响,并为新设计提供灵感。
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THE EFFECT OF DIFFERENT DIELECTRIC MATERIALS ON RADIATION FEATURES OF SLOTTED PATCH ANTENNAS FOR 6G COMMUNICATION SYSTEMS
In this study, patch antenna structures with rhombic shaped slots have been investigated for 6G communication systems. Four different dielectric materials, such as arlon, polyamide, polyimide, and silicon, have been selected for antennas with the same design procedure. In this way, the effects of slots on frequency responses for different dielectric substrates have been searched. The slots are parametrically analyzed in terms of edge size and location, and the designs are completed for values with the lowest return loss levels. The amount of return loss reduction in slotted antennas is 38% and 42% for arlon and polyamide, respectively, while the reduction is 28% and 8% for polyimide and silicon, respectively. In addition, bandwidth increases in slotted antennas vary according to the dielectric substrate material. The bandwidth increases have been 0.05 GHz, 0.426 GHz, 0.839 GHz, and 0.475 GHz for arlon, polyamide, polyimide, and silicon substrates, respectively. With these results, the study will give an insight to the researchers who will design antennas in 6G bands in terms of the effects of materials on antenna characteristics and will give inspiration for new designs.
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