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Analysis of DME/DME Navigation Performance and Ground Network Using Stretched-Front-Leg Pulse-Based DME

机译:使用基于前腿脉冲的DME分析DME / DME导航性能和地面网络

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摘要

Global navigation satellite systems (GNSS) have become a primary navigation means for aircraft. However, the signal power of GNSS is very weak, and its service can be disrupted at any time when there is interference or jamming. For this reason, the Federal Aviation Administration (FAA) in the United States has recently chosen a distance measuring equipment (DME)-based aircraft navigation technique, called DME/DME, as an alternative aircraft navigation means for use by around 2030. The reason that the FAA plans to use DME/DME in such a short duration, by around 2030, is presumed to be because the ranging accuracy of DMEs is between 70 to 300 m, which is about 7 to 30 times worse than that of GNSS. Thus, a significant loss of positioning performance is unavoidable with current DMEs. To make DME/DME a more competent alternative positioning source, this paper proposes an advanced DME that could provide a ranging accuracy of around 30 m by employing a recently developed Stretched-Front-Leg (SFOL) pulse. The paper introduces optimal ground station augmentation algorithms that help to efficiently transform the current DME ground network to enable a DME/DME positioning accuracy of up to 0.3 nm or 92.6 m with a minimal number of new ground DME sites. The positioning performance and augmented ground network using the proposed SFOL pulse-based DME are evaluated in two regions which have distinct terrain conditions.
机译:全球导航卫星系统(GNSS)已经成为飞机的主要导航手段。但是,GNSS的信号功率非常弱,当存在干扰或干扰时,其服务可能会随时中断。因此,美国联邦航空管理局(FAA)最近选择了一种基于测距设备(DME)的飞机导航技术,称为DME / DME,作为在2030年左右使用的替代飞机导航手段。据推测,FAA计划在2030年左右的如此短时间内使用DME / DME,是因为DME的测距精度在70至300 m之间,比GNSS差7至​​30倍。因此,当前的DME不可避免地会导致定位性能的重大损失。为了使DME / DME成为更胜任的替代定位源,本文提出了一种先进的DME,它可以通过使用最近开发的舒展前腿(SFOL)脉冲来提供约30 m的测距精度。本文介绍了最佳的地面站增强算法,这些算法有助于有效地转换当前的DME地面网络,以最少的新地面DME站点数量实现DME / DME的定位精度高达0.3 nm或92.6 m。使用建议的基于SFOL脉冲的DME的定位性能和增强地面网络在地形条件不同的两个区域中进行了评估。

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