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Separation of SSR signals by array processing in multilateration systems

机译:在多边系统中通过阵列处理分离SSR信号

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摘要

Location and identification of cooperating aircraft in the airport area (and beyond) may be implemented by multilateration (MLAT) systems using the secondary surveillance radar (SSR) mode S signals. Most of these signals, spontaneously emitted from on-board mode S transponders at a fixed carrier frequency, arrive randomly at the receiving station, as well as many mode A/C replies from legacy transponders still in use. Several SSR signals are, then, overlapped in multiple aircraft situations. Therefore, the aim of this work is the separation of overlapped SSR signals, i.e., signals superimposed in time at receiving stations. We improve the MLAT receiving station by replacing the single antenna by an array of m elements and using array signal processing techniques. In the literature, several algorithms address the general source separation problem, but a very few of them are specifically designed for a mixture of overlapping SSR replies. Unfortunately, all of them have either some shortcomings, or an expensive computational cost, or no simple practical implementation. In this paper, we use the time sparsity property of the sources to propose more reliable, simpler, and more effective algorithms based on projection techniques to separate multiple SSR signals. Real recorded signals in a live environment are used to demonstrate the effectiveness of our method.
机译:可以通过使用次级监视雷达(SSR)模式S信号的多纬度(MLAT)系统来实现在机场区域(及以后)合作飞机的位置和识别。这些信号中的大多数以固定的载波频率自机载模式S应答器自发发射,并随机到达接收站,还有许多仍在使用的传统应答器的模式A / C答复。然后,在多个飞机情况下,几个SSR信号会重叠。因此,这项工作的目的是分离重叠的SSR信号,即在接收站及时叠加的信号。我们通过用m个元素的阵列代替单个天线并使用阵列信号处理技术来改进MLAT接收站。在文献中,有几种算法解决了一般的源头分离问题,但是很少有专门针对重叠的SSR答复而设计的算法。不幸的是,它们全部都有一些缺点,或者计算成本很高,或者没有简单的实际实现。在本文中,我们利用信号源的时间稀疏性,基于投影技术来分离多个SSR信号,提出了更可靠,更简单,更有效的算法。在现场环境中的真实记录信号用于证明我们方法的有效性。

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