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The use of wavelet packet transform for digital-signal processing of PD data acquired from tests on inverter-fed specimen

机译:小波包变换在从逆变器馈送样品测试中获取的PD数据的数字信号处理中的应用

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When feeding an induction motor by means of an IGBT inverter, the electrical and thermal stresses on the electrical insulation can be different from those deriving from a pure sinusoidal voltage waveshape, which can lead to sensibly shortened device life-time. A fundamental role on the premature failure of the electrical insulation is played by partial discharges in the dielectric; in order to clarify such aspect, measurements under real operating conditions are needed. Under such conditions traditional acquisition on limited bandwidth (/spl sim/400 kHz) oscilloscopes, according to IEC 270, is extremely difficult due to the presence of steep front pulses in correspondence with the power devices commutations which can completely hide the information given by the partial discharge; in such cases ultra-wide band (bandwidth /spl sim/1 GHz) detection must be performed. However, due to the extremely noisy environment, a digital signal-processing method must be adopted in order to separate the PD pulse from the transient voltage signal due to the commutations. In a previous work the authors have shown the first attempt of using the wavelet packet transform and the Daubechies wavelet family for the extraction of PD pulses. However, since the accuracy of the results can depend on the choice of a suitable mother wavelet, the aim of the present work is to deeply investigate on the WPT by comparing the performances of different wavelet families.
机译:当通过IGBT逆变器供给感应电动机时,电绝缘体上的电气和热应力可以与纯正弦电压波坡的源极不同,这可能导致装置寿命寿命明显缩短。在电介质中的部分放电在电绝缘过早失效的基本作用;为了澄清这样的方面,需要在实际操作条件下进行测量。在这种条件下,由于IEC 270的情况,根据IEC 270,传统采集的有限带宽(/ SPL SIM / 400 kHz)示波器,由于与能够完全隐藏所提供的信息的电力设备换向,因此由于存在陡峭的前脉冲而极其困难局部放电;在这种情况下,必须执行超宽带(带宽/ SPL SIM / 1 GHz)检测。然而,由于环境极嘈杂的环境,必须采用数字信号处理方法,以便将PD脉冲与由于换向引起的瞬态电压信号分离。在以前的工作中,作者已经示出了使用小波包变换和Daubechies小波族的第一次尝试进行PD脉冲的提取。然而,由于结果的准确性可以取决于合适的母体小波的选择,因此目前工作的目的是通过比较不同小波家族的性能来深入研究WPT。

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