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Vers les 20 kbit/s en transmission decametrique ionospherique : une application du traitement d'antenne sur des capteurs colocalises

机译:电离层十进制传输中的20 kbit / s:共定位传感器上天线处理的应用

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摘要

This paper presents an operational system of digital transmission within the H.F. frequency range, aiming at a significant increase of the data transfer rate compared with the current standard (4800 bit/s). Therefore, an array processing algorithm performs with a set of collocated sensors, the spatial responses of which are different one from each other. The dependence of the incoming polarization relatively to the direction of arrival induces a significant decorrelation of the received signals though no geometrical phase exists. Signal processing techniques run at the output of the spatial filter resorting for the synchronisation and the filtering (LMS algorithm) to classical and well-tested techniques involving training sequences. An experimental radio link with a 250 km range has been set up to test the sensibility of the performances in reception regarding the choice of waveforms. The operational results reach the expected goal as the data transfer rate increases up to 20 kbit/s in a bandwidth of 6 kHz.
机译:本文提出了一种在高频频率范围内的数字传输操作系统,旨在与当前标准(4800 bit / s)相比,显着提高数据传输速率。因此,阵列处理算法对一组并置的传感器执行操作,这些传感器的空间响应彼此不同。尽管不存在几何相位,但是入射偏振相对于到达方向的依赖性导致接收信号的显着去相关。信号处理技术在空间滤波器的输出处运行,以求同步和滤波(LMS算法),从而达到涉及训练序列的经典且经过充分测试的技术。已经建立了一个250 km范围的实验性无线电链路,以测试有关波形选择的接收性能的敏感性。随着数据传输速率在6 kHz的带宽内提高到20 kbit / s,操作结果达到了预期的目标。

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