与现有距离测量设备(DME)地面站兼容的伪测距信号的飞行测试

S. Lo, Yu‐Hsuan Chen, P. Enge, W. Pelgrum, Kuangmin Li, George Weida, Achim Soelter
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引用次数: 7

摘要

近70年来,测距设备一直是航空导航的基石。尽管全球导航卫星系统在民用航空中发挥着越来越重要的作用,但在可预见的未来,DME仍可以在强大的航空基础设施中发挥重要作用。开发了先进的概念来提高DME的性能和功能。一个概念是基于DME的伪卫星,它对现有的DME脉冲对进行位置调制。它可以与DME操作互操作,并且可以使用当前部署的带有贴花的DME转发器生成。这一概念适合作为全球导航卫星系统的稳健替代方案,用于航空导航或定时。本文研究了通过DME转发器上的贴花实现的DME伪卫星的性能。本文研究了DME伪卫星信号在空中和地面的同步和数据性能。本文将实际性能与理论结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flight test of a pseudo‐ranging signal compatible with existing distance measuring equipment (DME) ground stations
Distance measuring equipment (DME) has been a cornerstone of aviation navigation for the last 70 years. While GNSS is taking an increasingly important role in civil aviation, DME can still play an important role in a robust aviation infrastructure in the foreseeable future. Advanced concepts have been developed to improve DME performance and capabilities. One concept is a DME-based pseudolite that position modulates existing DME pulse pairs. It is interoperable with DME operations and can be generated using the currently fielded DME transponders with an applique. This concept is suitable as a robust alternative to GNSS for aviation navigation or timing. The paper examines the performance of DME pseudolite implemented via an applique on a DME transponder. The paper examines the synchronization and data performance of the DME pseudolite signal in the air and on the ground. The paper compares the actual performance to theoretical results.
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