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Electrothermal Design of Bidirectional Wide-Boom Log-Periodic Antennas

机译:双向宽幅对数周期天线的电热设计

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摘要

A wide-boom, microstrip-fed planar bidirectional log-periodic (LP) antenna is proposed and improvements in its impedance match, radiation, and thermal performances are demonstrated. The boom width of each arm is increased by moving its virtual apexes into the other arm while preserving the small flare angle and self-complementarity. This modification widens the ground plane for the microstrip feed line and results in enhanced impedance match and gain. In addition, electrothermal multi physics analysis demonstrates that the wide-boom mitigates hot spots logarithmically developed on LP’s active regions. The impedance and far-field measurements show that the fabricated antenna achieves VSWR ≤ 2 and flat gain around 5 dBi over a decade bandwidth. A non contact thermal imaging system is used to measure temperature response of the antenna under a ~5 W input power over 1.71–1.85 GHz range. The measured temperature images correlate well with the multi physics simulations, therefore validating the conclusions obtained via electrothermal analysis.
机译:提出了一种宽臂,微带馈电的平面双向对数周期(LP)天线,并展示了其阻抗匹配,辐射和热性能方面的改进。通过将其虚拟顶点移动到另一个臂中来增加每个臂的动臂宽度,同时保留较小的喇叭角和自我互补性。这种修改加宽了微带馈线的接地平面,并增强了阻抗匹配和增益。此外,电热多物理场分析表明,宽臂可缓解LP活动区域上对数发展的热点。阻抗和远场测量表明,制造的天线在十倍频带宽上达到VSWR≤2且平坦增益约为5 dBi。非接触式热成像系统用于在1.71–1.85 GHz范围内的〜5 W输入功率下测量天线的温度响应。测得的温度图像与多物理场模拟具有很好的相关性,因此验证了通过电热分析获得的结论。

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