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Coexistence between the future aeronautical system for continental communication L-DACS and the Distance Measuring Equipment DME

机译:未来用于大陆通信的航空系统L-DACS与测距设备DME共存

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In the last decade, the aeronautical authorities expressed their need to develop a new system for aeronautical radiocommunications. The L-band Digital Aeronautical Communication System (L-DACS) is the part of the future system that will be operating in a part of the aeronautical L-band (960–1164 MHz), already occupied by a large number of radio-frequency legacy systems. This paper aims at studying the L-DACS impact on a legacy system, the Distance Measuring Equipment (DME), under two critical situations. Such topics are fundamental in aeronautics, as any communication or radionavigation dysfunction may endanger flight and passengers security. Some obtained results will be used for the L-DACS standardization and its specifications finalization. For the first scenario (air-to-air scenario), we propose a deterministic algorithm to compute the interference level in the frequency domain. Since this seems to be insufficient for the second scenario (co-site scenario), we develop a time-frequency approach to analyze the interference using an aeronautical RFC test-bed that we implemented at Supelec.
机译:在过去的十年中,航空当局表示需要开发一种新的航空无线电通信系统。 L波段数字航空通信系统(L-DACS)是未来系统的一部分,它将在已经被大量射频占用的航空L波段(960-1164 MHz)的一部分中运行遗留系统。本文旨在研究在两种紧急情况下L-DACS对传统系统测距设备(DME)的影响。这些主题是航空学的基础,因为任何通信或无线电导航功能障碍都可能危害飞行和乘客的安全。一些获得的结果将用于L-DACS标准化及其规格定稿。对于第一种情况(空对空情况),我们提出了一种确定性算法来计算频域中的干扰水平。由于这似乎不足以用于第二种情况(同一地点的情况),因此我们开发了一种时频方法来使用我们在Supelec实施的RFC航空试验台来分析干扰。

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