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储能系统技术 储能系统 ★ 5.0

一种具有可切换透射/吸收频带的能量选择性吸波体

An energy-selective rasorber with switchable transmission/absorption band

作者 Han Xiong
期刊 Applied Physics Letters
出版日期 2025年1月
卷/期 第 127 卷 第 3 期
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 能量选择性吸收屏 频率选择吸收屏 PIN二极管 吸波功能 透波功能
语言:

中文摘要

本文提出了一种集成了频率选择性吸波体与能量选择表面(ESS)功能的结构,通过嵌入PIN二极管实现低功率下透波与高功率下吸波功能的动态切换。该结构由上层宽带吸波结构和下层可调频率选择结构组成。在低功率时,5.6–6.4 GHz频段内插入损耗低于0.5 dB,反射系数小于−10 dB,具备良好吸波性能;高功率时,反射与透射系数均小于−10 dB,实现高效吸收。相比现有ESS设计,该结构可有效切换透射与吸收频带,兼具防护与隐身功能,且具有高吸收效率和低插入损耗。

English Abstract

In this paper, an energy selective rasorber with integrated frequency selective rasorber and energy selective surface (ESS) functions is proposed, which realizes the dynamic switching between wave-transparent function at low-power level and wave-absorbing function at high-power level by embedding PIN diodes. The design of the structure consists of an upper broadband absorbing structure and a lower adjustable frequency-selective structure. At low power, the structure exhibits effective wave-absorbing function with Insertion Loss (IL) less than 0.5 dB and reflection coefficient less than −10 dB in the 5.6–6.4 GHz band, while at high power, both the reflection and transmittance coefficients are less than −10 dB. Compared with the existing ESS designs, the proposed structure is able to realize the effective switching between the transmitting and absorbing bands, thus providing both protection and stealth functions. In addition, the design exhibits high absorption efficiency, low IL, and po
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SunView 深度解读

该能量选择性吸波体技术对阳光电源电磁兼容设计具有重要参考价值。在ST系列储能变流器和PowerTitan大型储能系统中,SiC/GaN高频功率器件产生的电磁干扰是关键挑战,该技术提出的可切换透射/吸收机制可启发开发智能EMI抑制方案:正常运行时保持通信频段透射,故障或高干扰工况下切换至吸收模式。其宽带吸波结构(5.6-6.4GHz)与低插入损耗特性可应用于储能系统的RF通信模块防护,既保障iSolarCloud云平台无线通信质量,又实现电磁隐身。PIN二极管动态切换思路也可借鉴至三电平拓扑的有源EMI滤波器设计,提升储能系统在复杂电磁环境下的可靠性与防护能力。