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An Analysis of Electric Field Strength for Planning Indoor Wireless Networks at Various Frequencies

机译:规划各种频率的室内无线网络的电场强度分析

摘要

Understanding the characteristics of radio wave propagation is a very important task for ensuring the required signal coverage for indoor wireless communication systems. The received signal strengths are highly affected when blocked by obstacles such as human occupants, doors, walls, windows, etc. This thesis investigated the E-field distributions inside a Victorian terraced house. Many scenarios are presented to investigate some important elements that have a significant effect on E-field distributions, such as opening and closing doors, the movement and number of human occupants and the location of the transmitter. These are considered for indoor signal propagation at various frequencies, specifically 5.8 GHz, 2.4 GHz, 868 MHz and 433 MHz. The distribution of the E- field strength within the building has been obtained using the FEKO simulation suite. The methods used in the simulation are geometrical optics and the uniform theory of diffraction. The results demonstrate that when the transmitter is located near to a wall, then the field distributions within the Victorian house are attenuated due to more reflections and multipath effects. Also, the results show that the door’s status and human occupancy effect on the electric field coverage at 5.8 GHz and 2.4 GHz is more significant than at 868 MHz and 433 MHz. The practical results demonstrate that the radio signals can penetrate through several adjacent walls within the same floor, however they became very weak when they go through different floors. This indicates that the deployment and positioning of smart meters in domestic properties has to be carefully considered. Our results clearly prove that extensive E-field measurements should be performed prior to the deployment of wireless communication system within the building.
机译:为了确保室内无线通信系统所需的信号覆盖范围,了解无线电波传播的特性是一项非常重要的任务。当障碍物(例如人的住所,门,墙壁,窗户等)阻塞时,接收信号的强度会受到很大影响。本文研究了维多利亚式排屋内的电场分布。提出了许多方案来研究对电场分布有重大影响的一些重要因素,例如开门和关门,人员的移动和人数以及变送器的位置。考虑将这些信号用于各种频率(尤其是5.8 GHz,2.4 GHz,868 MHz和433 MHz)的室内信号传播。建筑物内的电场强度分布已使用FEKO模拟套件获得。模拟中使用的方法是几何光学和统一的衍射理论。结果表明,当发射器靠近墙壁时,由于更多的反射和多径效应,维多利亚房屋内的场分布会衰减。此外,结果还表明,门的状态和人员占用情况对5.8 GHz和2.4 GHz电场覆盖的影响比868 MHz和433 MHz更为显着。实际结果表明,无线电信号可以穿透同一层中的几个相邻墙,但是当它们穿过不同层时,它们变得非常微弱。这表明必须仔细考虑智能电表在住宅物业中的部署和定位。我们的结果清楚地证明,在建筑物内部署无线通信系统之前,应先进行广泛的电场测量。

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    Alharbi Yasir;

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  • 年度 2016
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