首页> 外文会议>Canadian Conference on Electrical and Computer Engineering >ENHANCEMENT OF CN TOWER LIGHTNING CURRENT DERIVATIVE SIGNALS USING A MODIFIED POWER SPECTRAL SUBTRACTION METHOD
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ENHANCEMENT OF CN TOWER LIGHTNING CURRENT DERIVATIVE SIGNALS USING A MODIFIED POWER SPECTRAL SUBTRACTION METHOD

机译:使用改进的功率谱减法法提高CN塔雷电电流衍生信号

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The CN Tower has been a source of lightning current data for the past 15 years. Since the CN Tower is a transmission tower and it is not unexpected that the recorded lightning current signals be corrupted with different kinds of noise. The existence of noise makes it difficult to extract the return-stroke current waveform parameters from the measured waveforms, which are important for developing lightning protection systems. In this paper, a Modified Power Spectral Subtraction (MSS) method has been developed in order to de-noise the lighting return-stroke current derivative signals measured at the tower. In order to evaluate the proposed de-noising technique, the derivative of Heidler function is used to model the measured return-stroke current derivative signal. The measured current derivative signal is simulated using the Heidler derivative model and by artificially corrupting it with noise signals measured at the tower in the absence of lightning. The proposed MSS method is applied to denoise the simulated current derivative signal and the resultant waveform is compared with the Heidler derivative model, thus enabling the accurate evaluation of the proposed method. The results of the evaluation show a substantial improvement in the signal peak-to-noise peak ratio (SPNPR) of up to 32 dB depending on the level of the noise signal added to the Heidler derivative function. Furthermore, 95.7%-98.5% recovery of the peak of the original Heidler derivative function was obtained. For further evaluation of the proposed MSS method, the conventional spectral subtraction (SS) method is applied for de-noising the same simulated current derivative signals, which produced a substantially lower SPNPR of up to 16 dB with a peak recovery of 93.3%-97.5% of the original Heidler derivative model.
机译:CN塔一直是雷电流数据源在过去的15年。由于CN塔是输电塔,它不是意想不到的是,所记录的雷电电流的信号与不同类型的噪声的损坏。噪声的存在使得难以提取从测量的波形,这是开发雷电保护系统重要的返回冲程电流波形参数。在本文中,一个修改的功率谱相减(MSS)方法已经被开发,以去噪声的照明返回冲程电流衍生物在塔测量的信号。为了评价所提出的去噪技术,海德勒函数的导数被用于测量的返回冲程电流导数信号进行建模。测得的电流导数信号是使用所述海德勒衍生物模型,并通过与在不存在雷击的塔测量的噪声信号人为破坏它模拟。所提出的MSS的方法被施加到去噪模拟的电流导数的信号,将所得波形与海德勒衍生物模式相比,从而使所提出的方法的准确的评价。评价的结果显示在高达32分贝取决于加入到海德勒导数函数的噪声信号的电平的信号的峰 - 峰噪声比(SPNPR)的显着改善。此外,获得原始海德勒衍生物函数的峰值的95.7%-98.5%的回收率。对于所提出的方法MSS的进一步评价,被应用于去噪相同的模拟电流信号衍生物,这就产生了一个基本上较低SPNPR至16分贝的93.3%的峰恢复常规频谱减法(SS)方法-97.5 %的原始海德勒衍生物模式。

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