Some features of Hilbert transform and their use in energy informatics

V. Babak, A. Zaporozhets, Yurii Kuts Yurii, L. Shcherbak
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引用次数: 1

Abstract

Information-measuring technologies (IMT) are an important instrument for solving problems of energy informatics. They allow to form primary information based on the interaction of energy facilities with IMT sensors that form information signals. In many practical applications, the constructive model of information signals is the model of narrowband signals. The article summarizes the features of the discrete Hilbert transform and its application to obtain the primary characteristics of information signals – bypass and phase as functions of time. The main advantages of using the discrete Hilbert transform in signal processing for energy informatics are considered, including the consistency of obtaining frequency and time characteristics, high information content, the ability to analyze the dynamics of changes in signal characteristics, the possibility of obtaining samples of characteristics of information signals of significant volumes, etc. It is proposed to use a phase characteristic to select the time interval that limits the signal sample and sets it to a multiple of the signal period, and the sampling rate of information signals to reduce the errors in estimating their spectrum. The possibility of obtaining on their basis secondary deterministic (voltage level, voltage deviations from the nominal level, attenuation coefficient, signal period, signal phase shift, oscillation frequency, etc.) and statistical (sample characteristic, sample variance, sample median, sample circular variance, sample circular median, sample circular kurtosis, etc.) of signal information characteristics, which allows more complete to use their information resource. These characteristics can be used both for assessing power quality characteristics and for monitoring and diagnosing of energy facilities. Keywords: energy informatics, information signals, signal processing, discrete Hilbert transform, amplitude signal characteristics, phase signal characteristics
希尔伯特变换的一些特征及其在能源信息学中的应用
信息测量技术是解决能源信息学问题的重要手段。它们可以根据能源设施与IMT传感器的相互作用形成初级信息,IMT传感器形成信息信号。在许多实际应用中,信息信号的构造模型是窄带信号的模型。本文总结了离散希尔伯特变换的特点及其在获取信息信号的主要特征——旁路和相位随时间的函数中的应用。考虑了离散希尔伯特变换在能源信息学信号处理中的主要优点,包括获取频率特征和时间特征的一致性、信息量高、分析信号特征变化动态的能力、获取大量信息信号特征样本的可能性等。提出了利用相位特性来选择限制信号采样的时间间隔,并将其设置为信号周期的倍数,以及信息信号的采样率,以减少估计其频谱的误差。在它们的基础上可以获得二次确定性(电压电平、电压偏离标称电平、衰减系数、信号周期、信号相移、振荡频率等)和统计性(样本特性、样本方差、样本中值、样本圆方差、样本圆中值、样本圆峰度等)的信号信息特征,从而可以更完整地利用它们的信息资源。这些特性既可用于评估电能质量特性,也可用于监测和诊断能源设施。关键词:能量信息学,信息信号,信号处理,离散希尔伯特变换,幅度信号特性,相位信号特性
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