一个紧的超宽带带止过器,使用mu-负和ENZ元材料共振器,用于多个先进的无线通信系统
Mouhssine Elbathaoui1,2, Nawfal Jebbor2, Sudipta Das3
1ER2TI Laboratory, Engineering Science Department, Faculty of Sciences and Techniques, Modeling, Control of Optoelectronic Systems and Components MCSCO, Moulay Ismail University of Meknes, Errachidia, Morocco.
PloS one
|November 6, 2025
概括
使用元材料共振器的新型紧型超宽带带截止过器 (UWB-BSF) 提供了120%的分数带宽. 这种创新的过器为5G,Wi-Fi和雷达应用提供了高选择性.
科学领域:
- 电气工程 电气工程
- 材料科学 材料科学 材料科学
- 电磁学 电磁学 电磁学 电磁学
背景情况:
- 超材料 (MTM) 具有独特的电磁性质,在自然界中无法找到.
- 超宽带 (UWB) 系统需要具有大小带宽和高选择性的过器.
- 现有的UWB过器经常面临大小,带宽和选择性方面的挑战.
研究的目的:
- 提出一个紧的超宽带带止过器 (UWB-BSF) 使用互补的电气LC (CELC) 装载的元材料 (MTM) 共振器.
- 为了实现一个宽的3dB止带,具有高排斥和出色的选择性.
- 为现代无线通信系统验证过器的性能.
主要方法:
- 用CELC装载的MTM共振器的设计,具有负有效透率和近零 (ENZ) 的epsilon-permittivity.
- 在罗杰斯RO3006TM基板上集成MTM共振器与微条线.
- 用于性能验证的电磁模拟和实验测量.
主要成果:
- 从5.4GHz到21.6GHz实现了超宽的3dB止带 (120%的分数带宽).
- 具有0.87的形状因子和七个传输零的高选择性.
- 在传输带中获得平面组延迟 (GD ≤ 0.74 ns和GD ≤ 0.50 ns).
- 验证的紧型过器大小:0.55λg × 2.22λg × 0.07λg.
结论:
- 拟议的UWB-BSF在带宽和选择性方面提供了卓越的性能.
- 该过器非常适合各种应用,包括5G (n77,n78,n79),Wi-Fi 6,4G LTE,Ku频段卫星和K频段雷达.
- 紧而高效的设计支持无线基础设施和可持续技术 (可持续发展目标9,11,12) 的创新.
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