Symmetrical Components Digital Filters for Microprocessor-Based Protection Input Signals

Q3 Energy
F. Romaniuk, V. Rumiantsev, Y. Rumiantsev
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引用次数: 0

Abstract

In microprocessor protections, measuring bodies are used that react to individual symmetrical components of signals or a combination of them. This makes the corresponding protection devices more sensitive. Of all the varieties of digital filters of symmetrical components, filters of the negative and zero sequences are mainly used. As for the known algorithms of their software implementation, it is advisable to use filters that form orthogonal components of the required sequence from orthogonal components of phase or phase-to-phase values of signals. Digital Fourier filters, characterized by inertia, are used as formers of the latter. For this reason, their transient modes are accompanied by the appearance of a dynamic error, which can significantly affect the functioning of filters of symmetrical components, worsening their properties. A significant reduction in this effect can be achieved by using shapers with correction of dynamic errors to isolate the orthogonal components of the input signals. They are based on non-recursive digital Fourier filters, the orthogonal components of which are subjected to software correction processing in order to obtain equivalent components characterized by fast-fading dynamic amplitude errors. Correction of the dynamic phase error is realized in the process of obtaining the resulting orthogonal components, which are a combination of Fourier components and calculated ones that have been estimated according to them. Based on the information about the amplitudes and current phases of the signals contained in the equivalent and resultant components, respectively, the resulting orthogonal components are formed, differing in minimal amplitude and phase errors in transient modes. According to these components, the orthogonal components of the signal of the negative and zero sequences in the corresponding filter are calculated. In the dynamic modeling environment of MATLAB-Simulink-SimPowerSystems, a digital model is implemented, which includes a power system, a three-phase group of current transformers, a load, a short-circuit block, as well as models of negative and zero sequence filters. The study of the functioning of these filters was carried out using two types of test actions, viz. a three-phase system of sinusoidal signals and a three-phase system of signals close to real secondary currents in short circuits. The results of the research have demonstrated that the developed digital filters of the negative and zero sequences have 1.1–1.4 times higher performance as compared with similar Fourier filters accepted as reference and that they are distinguished by improved magnitudes of dynamic indicators.
基于微处理器保护输入信号的对称分量数字滤波器
在微处理器保护中,测量体用于对信号的单个对称分量或它们的组合作出反应。这使得相应的保护装置更加灵敏。在各种对称分量的数字滤波器中,主要采用负序和零序滤波器。对于其软件实现的已知算法,建议使用由信号的相位或相对相值的正交分量构成所需序列的正交分量的滤波器。以惯量为特征的数字傅立叶滤波器被用作后者的形成器。因此,它们的瞬态模式伴随着动态误差的出现,这可以显著影响对称元件滤波器的功能,使其性能恶化。通过使用具有动态误差校正的整形器来隔离输入信号的正交分量,可以显著减少这种影响。该方法基于非递归数字傅立叶滤波器,对其正交分量进行软件校正处理,得到具有快衰落动态幅度误差特征的等效分量。动态相位误差的校正是在得到正交分量的过程中实现的,正交分量是傅里叶分量和根据它们估计的计算分量的组合。根据等效分量和合成分量中分别包含的信号的幅值和电流相位信息,形成得到的正交分量,它们在瞬态模式下的最小幅值和相位误差不同。根据这些分量,计算出相应滤波器中负序列和零序列信号的正交分量。在MATLAB-Simulink-SimPowerSystems的动态建模环境下,实现了一个数字模型,该模型包括电力系统、三相互感器组、负载、短路块以及负序滤波器和零序滤波器模型。使用两种类型的测试动作来研究这些滤波器的功能,即正弦信号的三相系统和接近实际二次电流的短路信号的三相系统。研究结果表明,所开发的负序列和零序列数字滤波器的性能是同类傅立叶滤波器的1.1-1.4倍,并且它们的动态指标有所提高。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
32
审稿时长
8 weeks
期刊介绍: The most important objectives of the journal are the generalization of scientific and practical achievements in the field of power engineering, increase scientific and practical skills as researchers and industry representatives. Scientific concept publications include the publication of a modern national and international research and achievements in areas such as general energetic, electricity, thermal energy, construction, environmental issues energy, energy economy, etc. The journal publishes the results of basic research and the advanced achievements of practices aimed at improving the efficiency of the functioning of the energy sector, reduction of losses in electricity and heat networks, improving the reliability of electrical protection systems, the stability of the energetic complex, literature reviews on a wide range of energy issues.
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