建筑中无线通信信号特性的实验研究

Z. Din, L. Bernold
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引用次数: 3

摘要

本研究的目的是了解生长中的混凝土结构的建筑构件和不同的建筑材料(如玻璃和钢)对建筑工地Wi-Fi信号传播的影响。无线局域网被认为是建设中连接通信孤岛的有效工具。然而,设计一个可以随着新结构而增长的Wi-Fi网络需要了解2.4 GHz传输的电磁信号的传播性能。本文综述了电磁信号的理论行为,当信号衰减是由各种建筑材料改变其强度、方向并可能导致全吸收时。作者采用典型的建筑布局进行实验,测量常见的建筑特征和通信技术对信号强度的影响。实测数据不仅证实了基于理论的预测,而且表明了当障碍物抑制电磁信号的视距“传播”时,预测信号传播的复杂性。独创性/价值与其他论文不同的是,实验是在一个混凝土建筑外进行的,模拟了发射机在现场办公室设置的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study of signal behavior for wireless communication in construction
Purpose The purpose of this study is to understand the effects of building components of a growing concrete structure and different building materials such as glass and steel on Wi-Fi signals propagation in a construction site. Wireless local area networks are considered effective tools to link the islands-of-communication in construction. Still, designing a Wi-Fi network that can grow with a new construction requires that one understands the performance of propagation of electromagnetic signals transmitted at 2.4 GHz. Design/methodology/approach This paper reviews the theoretical behavior of electromagnetic signals when signal attenuation is caused by various construction materials changing their strengths, directions and possibly leading to total absorption. The authors used a typical building layout to conduct experimental work to measure the effect of common building features and communication technologies on signal strengths. Findings The measured data not only confirmed the theory-based predictions but also demonstrated the complexity of predicting signal propagation when obstructions inhibit the line-of-sight “travel” of electromagnetic signals. Originality/value Different to other papers, the experiments were conducted outside a concrete building mimicking the situation where the transmitter is set up at the site office.
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