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3-D Ionospheric Plasma Bubble Model for Ground-Based Augmentation System

机译:基于地面增强系统的3-D电离层等离子泡沫模型

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The ground-based augmentation system (GBAS) is now an important system for assisting the global navigation satellite system (GNSS) based aircraft navigation during landing phases. Since the ionospheric irregularity is one of the most serious problem in the high-precision GBAS, the impacts of ionospheric irregularities to GBAS in many countries need to be studied before actual installation and operation. However, most of previous studies are based on the rare ionospheric storm events observed in US in the mid-latitude region. For Thailand, which is located in equatorial and low-latitude region, the ionospheric irregularity known as plasma bubble is a common phenomenon after sunset, considered to have adverse impact to the integrity of GBAS operation. In this paper, we propose a simple 3-D ionospheric plasma bubble model for studying its impacts on GBAS operation in Thailand. The background electron density generated by the NeQuick2 model combined with the rectangular depletion are used in the near real-time simulation.
机译:基于地面的增强系统(GBA)现在是协助在着陆阶段期间基于全球导航卫星系统(GNSS)的飞机导航的重要系统。由于电离层不规则是高精度GBA中最严重的问题之一,因此在实际安装和操作之前需要研究电离层不规则性对许多国家GBA的影响。然而,以前的大多数研究基于在中际区域中观察到的罕见电离层风暴事件。对于位于赤道和低纬度地区的泰国,称为等离子体泡沫的电离层不规则性是日落后的常见现象,被认为对GBA操作的完整性产生了不利影响。本文提出了一种简单的3-D电离层等离子泡沫模型,用于研究其对泰国GBAS操作的影响。由Nequick2模型产生的背景电子密度与矩形耗尽结合使用的近实时仿真。

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