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首页> 外文期刊>IEEE Transactions on Signal Processing >Performance Analysis of a Novel Matched Filter Detector With Reduced Out-of-Band Response for Narrowband Signals
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Performance Analysis of a Novel Matched Filter Detector With Reduced Out-of-Band Response for Narrowband Signals

机译:新型带通滤波器减少带外响应的窄带信号性能分析

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Reduced spectral response in adjacent spectral bins is very desirable for detectors since it provides the capability to detect narrowband signals in the presence of unknown interference and colored noise. Recently, a new method of detecting narrowband signals which uses a close approximation to the matched filter is proposed by Raja Kumar. The impulse response of this filter turns out to be longer than that of the matched filter. In order to support this extra length of filter response, it is proposed that the signal be extrapolated by prediction before the filtering operation. In this paper, the characteristics of this detector are mathematically analyzed and the performance of the detector in the presence of additive white Gaussian noise (AWGN) is studied. The detection method uses predicted signals that are obtained typically from short time data. Hence, in this paper, a method of analyzing the statistics of predicted signals from short time data is presented, and it is applied for the performance analysis of the present detector. The accuracy of the present detection analysis is demonstrated through theoretical and simulation studies. Also the analysis and performance study is extended to fluctuating targets, and it is shown that the proposed method yields near-optimum performance for Swerling's Case-1 and Case-3 targets while giving the excellent advantage of low out-of-bin response.
机译:对于检测器而言,降低相邻光谱箱中的光谱响应非常必要,因为它提供了在存在未知干扰和有色噪声的情况下检测窄带信号的能力。最近,Raja Kumar提出了一种新的检测窄带信号的方法,该方法使用了一种与匹配滤波器近似的方法。事实证明,该滤波器的脉冲响应比匹配滤波器的脉冲响应更长。为了支持滤波器响应的这种额外长度,建议在滤波操作之前通过预测来推断信号。本文对这种探测器的特性进行了数学分析,并研究了在存在加性高斯白噪声(AWGN)的情况下探测器的性能。该检测方法使用通常从短时数据获得的预测信号。因此,本文提出了一种从短时数据中分析预测信号的统计量的方法,并将其应用于本探测器的性能分析。通过理论和仿真研究证明了本检测分析的准确性。分析和性能研究还扩展到了波动的目标,结果表明,该方法为Swerling的Case-1和Case-3目标提供了近乎最佳的性能,同时具有低箱外响应的出色优势。

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