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首页> 外文期刊>IEEE Transactions on Signal Processing >Algebraic Algorithms to Separate Overlapping Secondary Surveillance Radar Replies
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Algebraic Algorithms to Separate Overlapping Secondary Surveillance Radar Replies

机译:分离重叠的二次监视雷达答复的代数算法

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摘要

The secondary surveillance radar (SSR) is a transponder system used in air-traffic control (ATC). Due to growing traffic densities, it is increasingly likely that a ground station receives a mixture of responses of various aircraft, partly overlapping in frequency and time. Currently such “collisions” are disregarded, at a loss of system performance and reliability. In this paper, we propose to equip the ground station with an antenna array, and investigate techniques to blindly separate such a mixture based on source waveform properties. At baseband, a received SSR signal consists of a binary sequence with alphabet ${0,1}$, modulated by a complex exponential due to the residual carrier frequency. We present three algebraic algorithms to compute the separating beamformers by taking into account the particular modulation format of the received signal. The CramÉr–Rao bound (CRB) is derived, extensive simulations are presented, and an experimental platform has been built to collect measurement data and demonstrate the algorithms.
机译:辅助监视雷达(SSR)是用于空中交通管制(ATC)的应答器系统。由于交通密度的增长,地面站越来越有可能接收各种飞机响应的混合,频率和时间部分重叠。当前,这样的“冲突”被忽略了,从而损失了系统性能和可靠性。在本文中,我们建议为地面站配备天线阵列,并研究基于源波形属性盲分离此类混合物的技术。在基带处,接收到的SSR信号包含一个二进制序列,该序列具有字母$ {0,1} $,由于残留载波频率而被复数指数调制。考虑到接收信号的特定调制格式,我们提出了三种代数算法来计算分离的波束形成器。推导了CramÉr-Rao边界(CRB),并进行了广泛的仿真,并且建立了一个实验平台来收​​集测量数据并演示算法。

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