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PIN-Diode-Based High-Intensity Radiation Fields (HIRF) Protection of a Printed Dipole Antenna

机译:基于PIN二极管的高强度辐射场(HIRF)保护印刷偶极天线

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摘要

In this article, a PIN-diode-based high-intensity radiation fields (HIRF) protection method was proposed and the sensitivity to the field intensity of incident wave has been verified by a printed dipole antenna loaded with three pairs of PIN diodes at S-band. To illustrate this method, an equivalent linear circuit was raised to analyze the basic operation principle of the proposed antenna. With a low-power incident wave, the PIN diodes are in off-state and the gain of the proposed antenna remains unaffected; while it drops considerably as the PIN diodes are triggered by HIRF. Furthermore, extensive parametric studies of the structure were analyzed by full-wave simulation to investigate the key factors affecting the performance of HIRF protection and antenna characteristics. Finally, a prototype was fabricated and experiments were implemented to verify the feasibility, which shows a high isolation of 19 dB. To the best of our knowledge, the proposed antenna is the first one to achieve HIRF protection through integrated antenna technology, which features with low cost and compact structure, providing a new perspective.
机译:在本文中,提出了一种基于引脚二极管的高强度辐射场(HIRF)保护方法,并通过在S-中装载有三对PIN二极管的印刷偶极天线验证了对事故波的励磁强度的敏感性。乐队。为了说明该方法,提高了等效的线性电路以分析所提出的天线的基本操作原理。通过低功率入射波,引脚二极管处于关闭状态,提出的天线的增益仍未受到影响;当它被HIRF触发PIN二极管时,它会显着下降。此外,通过全波仿真分析了对结构的广泛参数研究,以研究影响HIRF保护和天线特性性能的关键因素。最后,制造了原型,实施了实验以验证可行性,其显示出19 dB的高分分离。据我们所知,所提出的天线是第一个通过集成天线技术实现HIRF保护的,该技术具有低成本和结构紧凑的功能,提供了新的视角。

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