用x波段波测量陶瓷砌块墙体的衰减

M. C. Barros, Kauê T. N. Duarte, L. L. Roger
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引用次数: 0

摘要

如今,许多公司依赖于他们的技术和Wi-Fi信号之间的良好通信,Wi-Fi信号是x波频率的一部分。由于电波传播的困难,通信可能会受到干扰,这主要取决于墙壁的数量和建筑物的位置。因此,建筑物应适应避免这种干扰,以尽量减少信号损失。波传播中的干扰不仅与墙有关,而且与墙的结构有关。由于建筑物的结构和组织可能对信号强度产生负面影响,因此建筑物结构和波传播的研究可以互补。本研究分析了x波在陶瓷壁上的衰减(从8GHz到12ghz),以评估其对波传播的影响。这项工作与文献的不同之处不仅在于使用的材料,考虑到有许多工作涉及混凝土块,而且还在于计算波信号,重点关注被分析对象中的损失函数,从而实现异常行为分析。这种传播行为可以用来评估家里最有价值的设备(无线设备、电视)。最后,对陶瓷砌块进行了研究,因为它具有成本低、重量轻、易于操作、使用频率高的特点。试验在80cm × 80cm的壁上进行。x波是由两个喇叭天线(发射器和接收器)产生的,它们位于墙壁70厘米的两侧和方向上。我们发现x波频段的衰减增强,在11GHz处显著下降。信号下降主要是由于材料特性,即阻带。这种下降是由陶瓷块的介电常数和它们周期性重复的称为电磁带隙结构的空隙之间的差异产生的电磁带结构引起的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Attenuation Measurement of Ceramic Blocks Wall Using X-Band Waves
Nowadays, many companies depend on good communication between their technologies and Wi-Fi signal, which are part of the X-waves frequencies. Communication may suffer interference due to wave propagation’s difficulty, mainly depending on the number of walls and where the building is located. Therefore, buildings should be adapted to avoid this interference in order to minimize signal losses. Interference in wave propagation depends not only on walls but also on their structure. The studies of building construction and wave propagation may be complementary since the structure and organization may negatively affect the signal strength. This work analyzes X-waves’ attenuation (from 8GHz up to 12 GHz) in ceramic walls to evaluate their effects on wave propagation. This work differs from Literature not only by the material used, considering that there are many jobs involving concrete blocks, but also by calculating the wave signal focusing on a loss function in the analyzed object, enabling anomalous behavior analysis. This propagation behavior allows evaluating the most valuable equipment in a house (wireless device, TV). Finally, ceramic blocks were studied because they have a low cost, they are lightweight, easy to handle, and have a high frequency of use. The tests were performed in an 80cm x 80cm wall. The x-waves were produced by two horn antennas (transmitter and receiver) located at 70 cm of the wall on opposite sides and directions. We found an enhancement of attenuation in the x-waves frequency band with a significant drop at 11GHz. The signal drop mainly occurs due to the material characteristics, a.k.a stop band. This drop is caused by the electromagnetic band structure produced by the difference between the dielectric constant of the ceramic blocks and their periodically repeated voids called Electromagnetic Band Gap structure.
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