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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Transient interference excision in over-the-horizon radar using adaptive time-frequency analysis
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Transient interference excision in over-the-horizon radar using adaptive time-frequency analysis

机译:基于自适应时频分析的超视距雷达瞬态干扰消除

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摘要

The performance of over-the-horizon radars (OTHRs) degrades significantly due to transient interferences such as lightning, meteor echoes, and man-made impulse bursts. The conventional techniques used to suppress these transient interferences generally follow a simple time-domain procedure which first localizes the transient, sets the corrupted time samples to zero, and follows by data reconstruction via interpolations. However, for an OTHR operation with a short coherent integration time (CIT) of a few seconds, the transient interference may corrupt a significant portion of the received data such that data interpolation can become erroneous. In this paper, a new transient interference excision technique is proposed. It utilizes the adaptive time-frequency analysis technique to parameterize the radar signal. The transient interference can then be identified and subsequently removed via their characteristic parameters. No data interpolation is needed. The performance of the proposed technique is illustrated by simulated and experimental OTHR data.
机译:由于瞬态干扰(例如闪电,流星回波和人为脉冲爆发),超视距雷达(OTHR)的性能大大降低。用于抑制这些瞬态干扰的常规技术通常遵循简单的时域过程,该过程首先定位瞬态,将损坏的时间样本设置为零,然后通过插值进行数据重建。但是,对于具有几秒钟的短相干积分时间(CIT)的OTHR操作,瞬态干扰可能会破坏接收数据的重要部分,从而使数据插值变得错误。本文提出了一种新的瞬态干扰去除技术。它利用自适应时频分析技术对雷达信号进行参数化。然后可以识别瞬态干扰,然后通过其特征参数消除瞬态干扰。不需要数据插值。仿真和实验OTHR数据说明了所提出技术的性能。

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