Q3 Computer Science
Redhwan Mawari, A. H. Henderson, Muhammad B. Akbar, G. Durgin, M. Zohdy
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引用次数: 3

摘要

在无线通信时代,由于周围环境的原因,准确表征无线小尺度衰落信道是一项具有挑战性的任务。因此,本文介绍了一种考虑实际环境条件的小尺度衰落实验表征方法。通过在移动接收器移动时进行二维测量;将实现更精确的通道。二维测量是指从接收机沿x和y方向采集数据。二维测量数据所包含的信息远远多于所采集的一维数据。为了在真实的环境条件下表现小尺度通道,需要新的方法来配置二维系统和分析二维数据。本文介绍的表征新方法是,当接收器以二维方式移动时,在不同的场景下(视距,非视距和双波漫射功率)对接收器进行测量。实验在长7米,宽4米的房间内进行,其中发射天线与接收机之间的距离约为3米。这些场景代表了不同的实时条件,其中障碍在不同的场景中有所不同。例如,瞄准线假设发射器和接收器之间有清晰的瞄准线,非瞄准线假设发射器和接收器之间有许多障碍物,即墙壁,橱柜等,双波漫射功率假设接收器周围有金属反射器。与过去的一维测量相比,实验显示了更准确的结果,在一维测量中,接收器在一个方向上移动,接收器固定在一个方向上,没有捕获到建设性和破坏性干扰。二维测量技术,即在接收器在x和y方向上移动时捕获数据,提供了关于接收器在移动时与接收器周围障碍物之间相互作用引起的建设性和破坏性干扰模式的基本信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Improved Characterization of Small Scale Fading Based on 2D Measurements and Modeling of a Moving Receiver in an Indoor Environment
Accurately characterizing the wireless small-scale fading channel has been a challenging task in the wireless communication era due to the surrounding environment. Therefore, this paper introduces a new technique to experimentally characterize the small-scale fading taking under consideration real environmental conditions. By conducting a two dimensional measurement while the mobile receiver is moving; a more accurate channel will be achieved. Two-dimensional measurement refers to collecting data from the receiver along the x and y direction. The two-dimensional measurement data contain far more information than a one-dimensional data collected. In order to represent the small-scale channel along with the real environmental conditions, new approaches are necessary to configure the two-dimensional system and to analyze the 2D data. The new approach this paper introduces for the characterization is that the measurements are conducted on a receiver while it is moving in a two dimensional manner, under different scenarios, Line-of-sight, Non-line-of-sight, and Two-wave-Diffuse Power. The experiment was conducted in a 7 meters long by 4 meters wide room, wherein the distance between the transmitter antenna and receiver is about 3 meters. Those scenarios represent different real-time conditions where obstacles differ from one scenario to another. For example, the line of sight scenario assumes there a clear line of sight between transmitter and receiver, Non line of sight assumes many obstacles between the transmitter and receiver, i.e. walls, cabinets, etc. and Two Wave Diffuse Power assumes a metallic reflector surrounding the receiver. The experiment showed more accurate results when compared to the one dimensional measurement that has been done in the past where receiver is moving in one direction and also receiver being fixed where a constructive and destructive interference is not captured. The two dimensional measurement technique, i.e. capturing data while receiver moving in both x and y directions, provided essential information regarding the constructive and destructive interference patterns caused by the interaction between the receiver while moving and the obstacles surrounding the receiver.
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CiteScore
3.20
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