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Signal Decomposition by Using the S-Method With Application to the Analysis of HF Radar Signals in Sea-Clutter

机译:S方法的信号分解及其在海杂波高频雷达信号分析中的应用

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This paper presents a new approach to the time-frequency signal analysis and synthesis, using the eigenvalue decomposition method. It is based on the S-method, the time-frequency representation that can produce a distribution equal or close to a sum of the Wigner distributions of individual signal components. The new time-frequency signal decomposition method is evaluated on the simulated and experimental high-frequency surface-wave radar (HFSWR) data. Results demonstrate that it provides an effective way for analyzing and detecting maneuvering air targets with significant velocity changes, including target signal separation from the heavy clutter. The analysis shows that this method can provide additional insight into the interpretation and processing of radar signals, with respect to the traditional Fourier transform based methods currently used by the HFSWRs. The proposed method could also be used in other signal processing applications.
机译:本文提出了一种利用特征值分解方法进行时频信号分析与合成的新方法。它基于S方法,时频表示可以产生等于或接近各个信号分量Wigner分布之和的分布。在模拟和实验的高频表面波雷达(HFSWR)数据上评估了新的时频信号分解方法。结果表明,它为分析和检测具有明显速度变化的机动目标提供了一种有效的方法,包括从沉重的杂波中分离出目标信号。分析表明,相对于HFSWR当前使用的基于传统傅立叶变换的方法,该方法可以提供对雷达信号解释和处理的更多见解。所提出的方法也可以在其他信号处理应用中使用。

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