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Cross-Dipole Bandpass Frequency Selective Surface for Energy-Saving Glass Used in Buildings

机译:建筑用节能玻璃的交叉偶极带通频率选择表面

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Energy-saving glass is becoming very popular in building design due to their effective shielding of building interior against heat entering the building with infrared (IR) waves. This is obtained by depositing a thin layer of metallic-oxide on the glass surface using special sputtering processes. This layer attenuates IR waves and hence keeps buildings cooler in summer and warmer in winter. However, this resistive coating also attenuates useful microwave/RF signals required for mobile phone, GPS and personal communication systems etc. by as much as 30 dB. To overcome this drawback, a bandpass aperture type cross-dipole frequency selective surface (FSS) is designed and etched in the coatings of energy-saving glass to improve the transmission of useful signals while preserving IR attenuation as much as possible. With this FSS, 15–18 dB peak transmission improvement can be achieved, for waves incident with $pm 45^{circ}$ from normal for both TE and TM polarizations. Theoretical and measured results are presented.
机译:节能玻璃由于有效屏蔽了建筑物内部免受红外线(IR)进入建筑物的热量,在建筑设计中正变得非常流行。这是通过使用特殊的溅射工艺在玻璃表面沉积一层薄金属氧化物而获得的。该层减弱了红外波,因此使建筑物在夏天凉爽,在冬天凉爽。但是,这种电阻涂层也将移动电话,GPS和个人通信系统等所需的有用的微波/ RF信号衰减多达30 dB。为了克服这个缺点,设计了一种带通孔型交叉偶极子频率选择表面(FSS),并在节能玻璃的涂层中进行蚀刻,以改善有用信号的传输,同时尽可能保留IR衰减。使用此FSS,对于TE和TM偏振,与正常情况相比,入射光以$ pm 45 ^ circ入射的波,可以实现15–18 dB的峰值传输。给出了理论和测量结果。

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