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首页> 外文期刊>International Journal of Electrical and Computer Engineering >An improved smooth-windowed Wigner-Ville distribution analysis for voltage variation signal
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An improved smooth-windowed Wigner-Ville distribution analysis for voltage variation signal

机译:电压变化信号改进的平滑窗口Wigner-Ville分布分析

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This paper outlines research conducted using bilinear time-frequency distribution (TFD), a smooth-windowed wigner-ville distribution (SWWVD) used to represent time-varying signals in time-frequency representation (TFR). Good time and frequency resolutions offer superiority in SWWVD to analyze voltage variation signals that consist of variations in magnitude. The separable kernel parameters are estimated from the signal in order to get an accurate TFR. The TFR for various kernel parameters is compared by a set of performance measures. The evaluation shows that different kernel settings are required for different signal parameters. Verification of the TFD that operated at optimal kernel parameters is then conducted. SWWVD exhibits a good performance of TFR which gives high peak-to-side lobe ratio (PSLR) and signal-to-cross-terms ratio (SCR) accompanied by low main-lobe width (MLW) and absolute percentage error (APE). This proved that the technique is appropriate for voltage variation signal analysis and it essential for development in an advanced embedded system.
机译:本文概述了使用双线性时频分布(TFD)进行的研究,用于表示时频表示(TFR)中的时变信号的平滑窗口的Wigner-Ville分布(SWWVD)。良好的时分和频率分辨率在SWWVD中提供优越性,以分析由幅度变化组成的电压变化信号。从信号估计可分离的内核参数,以便获得精确的TFR。通过一组性能测量比较各种内核参数的TFR。评估表明不同的信号参数需要不同的内核设置。然后进行在最佳内核参数下操作的TFD的验证。 SWWVD表现出良好的TFR性能,可提供高峰到侧叶比(PSLR)和信号到交叉术语比(SCR),伴随着低主凸角宽度(MLW)和绝对百分比误差(APE)。这证明了该技术适用于电压变化信号分析,并且在先进的嵌入式系统中开发至关重要。

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