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Received signal strength and local terrain profile data for radio network planning and optimization at GSM frequency bands

机译:接收的信号强度和本地地形轮廓数据用于GSM频段的无线电网络规划和优化

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摘要

The behaviour of radio wave signals in a wireless channel depends on the local terrain profile of the propagation environments. In view of this, Received Signal Strength (RSS) of transmitted signals are measured at different points in space for radio network planning and optimization. However, these important data are often not publicly available for wireless channel characterization and propagation model development. In this data article, RSS data of a commercial base station operating at 900 and 1800 MHz were measured along three different routes of Lagos-Badagry Highway, Nigeria. In addition, local terrain profile data of the study area (terrain elevation, clutter height, altitude, and the distance of the mobile station from the base station) are extracted from Digital Terrain Map (DTM) to account for the unique environmental features. Statistical analyses and probability distributions of the RSS data are presented in tables and graphs. Furthermore, the degree of correlations (and the corresponding significance) between the RSS and the local terrain parameters were computed and analyzed for proper interpretations. The data provided in this article will help radio network engineers to: predict signal path loss; estimate radio coverage; efficiently reuse limited frequencies; avoid interferences; optimize handover; and adjust transmitted power level.
机译:无线信道中无线电波信号的行为取决于传播环境的本地地形轮廓。鉴于此,在空间的不同点处测量发射信号的接收信号强度(RSS),以进行无线电网络规划和优化。但是,这些重要数据通常无法公开用于无线信道表征和传播模型开发。在此数据文章中,沿着尼日利亚的拉各斯-巴达格里高速公路的三种不同路线测量了在900和1800 MHz下运行的商业基站的RSS数据。此外,还从数字地形图(DTM)中提取了研究区域的本地地形剖面数据(地形高程,杂波高度,高度和移动台距基站的距离),以说明独特的环境特征。 RSS数据的统计分析和概率分布在表格和图表中显示。此外,计算并分析了RSS和局部地形参数之间的相关程度(以及相应的显着性),以进行正确的解释。本文提供的数据将帮助无线电网络工程师:预测信号路径损耗;以及估计无线电覆盖范围;有效地重用有限的频率;避免干扰;优化切换;并调整发射功率水平。

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