An analysis of path loss models of LTE-Maritime for mobile communication system in maritime environments

Sung-Woong Jo, JunHyuk Jang, Wooseong Shim
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引用次数: 2

Abstract

Mobile users in maritime environments have the limitation to use various data services due to insufficient communication infrastructure. Many communication systems commonly used for terrestrial users have been applied to maritime environments. The objective of this paper is to analyze the path loss characteristics of long term evolution (LTE) system and confirm its feasibility in maritime environments. In this purpose, we developed the test-bed for LTE-Maritime at coastline in the Republic of Korea and conducted onboard experiments for reference signal received power (RSRP) and throughput measurements. The measured RSRP values are compared with three conventional path loss models of free space path loss (FSPL), two ray (TR) path loss, Okumura-Hata (OH) model. The comparison results show that the existing models tend to underestimate the RSRP degradation suffered from maritime environment and there is a notable difference between the experiment data and path loss models. In order to analyze their accuracy, root mean square error (RMSE) for each model is calculated according to the distance between a transmitter and a receiver, and the results show that the expected error becomes high with increasing distance. In addition, the throughput measurements show that LTE can provide high-speed data services in the order of Mbps with the long communication distance up to 100 km.
海洋环境下移动通信系统LTE-Maritime路径损耗模型分析
由于通信基础设施不足,海洋环境下的移动用户使用各种数据业务受到限制。许多通常用于地面用户的通信系统已应用于海洋环境。本文的目的是分析长期演进(LTE)系统的路径损耗特性,并验证其在海洋环境中的可行性。为此,我们在韩国海岸线开发了LTE-Maritime测试平台,并进行了参考信号接收功率(RSRP)和吞吐量测量的机载实验。实测RSRP值与自由空间路径损耗(FSPL)、双射线路径损耗(TR)和Okumura-Hata (OH)三种传统路径损耗模型进行了比较。对比结果表明,现有模型往往低估了海洋环境对RSRP的影响,实验数据与路径损失模型之间存在显著差异。为了分析各模型的精度,根据发射机与接收机之间的距离计算了各模型的均方根误差(RMSE),结果表明,随着距离的增加,期望误差逐渐增大。此外,吞吐量测量表明,LTE可以提供Mbps数量级的高速数据服务,通信距离可达100公里。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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