首页> 外文期刊>Compel >Time domain parameter identification of transient electromechanical oscillations
【24h】

Time domain parameter identification of transient electromechanical oscillations

机译:瞬态机电振荡的时域参数识别

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose The power systems behavior is nonlinear, and this is reflected in that the measurement signals are composed by multi-components. Thus, this paper aims to present a method for analyzing multi-component signals that allow calculating signal parameters such as frequency, damping constant, amplitude and phase for each component, as well as determining the direct current component.Design/methodology/approach The method proposed is based in the Z-transform of a damped sinusoidal signal with direct current. Only the Z-transform poles are used to form equation systems which are used to obtain frequency and damping. Then, the amplitude, the phase and the direct current component are determined by the above results.Findings The method is able to determine frequencies, damping constants, phases and amplitudes of the different modal components of a signal using only a few measurements. Moreover, the method does not require filter banks tuned with some previous knowledge of signal's characteristics. The presented test cases of field measured signals show the good performance of the proposed method, which is able to obtain the parameters of interest with a very short observation window.Originality/value One quality of this method is that it has a very short delay to reach the first solution and from there you get one result each sample; the delay time is equivalent to 2 + 4C samples where C is the number of components in the signal. Finally, it is concluded that because of the small number of samples that are needed and the low algorithmic complexity of the methodology, the method is apt to make applications in real time.
机译:目的,电力系统行为是非线性的,并且这反映在于测量信号由多分量组成。因此,本文旨在提出一种用于分析多分量信号的方法,该方法允许计算每个组件的频率,阻尼恒定,幅度和相位的信号参数,以及确定直流组件.design/methodology/appach方法提出的基于具有直流的阻尼正弦信号的Z变换。只有z变换磁极用于形成用于获得频率和阻尼的公式系统。然后,通过上述结果确定幅度,相位和直流分量。使用几种测量,该方法能够确定信号的不同模态分量的频率,阻尼常数,阶段和阶段的频率,阻尼常数,阶段和幅度的幅度。此外,该方法不需要使用一些先前的信号特性知识进行过滤器。呈现的现场测量信号的测试用例显示了该方法的良好性能,该方法能够通过非常短的观察窗口获得感兴趣的参数。这种方法的一个质量是它具有很短的延迟到达第一个解决方案,从那里获得一个结果每个样本;延迟时间相当于2 + 4C个样本,其中C是信号中的组件数。最后,得出结论是,由于所需的少量样本和方法的低算法复杂性,该方法易于实时制造应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号