A time-domain approach for the analysis of nonstationary signals in power systems

被引:15
|
作者
D'Apuzzo, Massimo [1 ]
D'Arco, Mauro [1 ]
机构
[1] Univ Naples Federico II, Dipartimento Ingn Elettr, I-80125 Naples, Italy
关键词
digital filtering; frequency and amplitude tracking; harmonic and interharmonic components; nonstationary signals; power systems monitoring;
D O I
10.1109/TIM.2008.919903
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Voltage and current waveforms produced by several power systems are often characterized by a wide spectrum that contains numerous components, namely the fundamental, harmonics, and interharmonics. They can be properly analyzed through discrete Fourier transform (DFT)-based methods only if they remain stationary in time; in fact, in the presence of nonstationary components, DFT-based approaches do not grant reliable results because of the absence of a well-defined periodicity interval. The digital signal processing method proposed in this paper aims at analyzing a large category of nonstationary signals observed in power systems. It is capable of analyzing waveforms produced by power systems that seemingly operate in steady-state conditions, in which time-varying components represent anomalies, as well as waveforms generated by some power apparatuses, which supply nonstationary waveforms by design. The wide range of applicability of the proposed method is granted by a suitable processing scheme, including distributed filtering and phase unwrapping operations. Distributed filtering operations are performed to distinguish and separately analyze the major components contained in complex waveforms. Phase unwrapping operations are needed in the presence of nonstationary components characterized by heavy drifts and/or large swings in frequency.
引用
收藏
页码:1969 / 1977
页数:9
相关论文
共 50 条
  • [21] A Structure-Preserving Time-Domain Analysis for Power Electronic-Interfaced Systems
    Shu, Dewu
    Jiang, Qirong
    Zhang, Chunpeng
    2017 IEEE PES INNOVATIVE SMART GRID TECHNOLOGIES CONFERENCE EUROPE (ISGT-EUROPE), 2017,
  • [22] An Enhanced Time-Domain Simulator of Transient Stability in Power Systems
    Overlin, Matthew
    Barbar, Marc
    Kant, Krishan
    Kirtley, James, Jr.
    Smith, Christopher
    2019 IEEE PES/IAS POWERAFRICA, 2019, : 487 - 492
  • [23] Revisiting Power Systems Time-Domain Simulation Methods and Models
    Lara, Jose Daniel
    Henriquez-Auba, Rodrigo
    Ramasubramanian, Deepak
    Dhople, Sairaj
    Callaway, Duncan S.
    Sanders, Seth
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2024, 39 (02) : 2421 - 2437
  • [24] An efficient approach for frequency-domain and time-domain hydrodynamic analysis of dam-reservoir systems
    Lin, Gao
    Wang, Yi
    Hu, Zhiqiang
    EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2012, 41 (13): : 1725 - 1749
  • [25] A spectral estimation method for nonstationary signals analysis with application to power systems
    Adamo, F.
    Attivissimo, F.
    Di Nisio, A.
    Savino, M.
    Spadavecchia, M.
    MEASUREMENT, 2015, 73 : 247 - 261
  • [26] A time-domain interpolation approach for DFT harmonic analysis
    Xi, JT
    Chicharo, JF
    SIGNAL PROCESSING, 1997, 58 (02) : 181 - 192
  • [27] A time-domain statistical approach for harmonics separation and analysis
    He, Chuan
    Shu, Qin
    Liu, Tianqi
    Han, Xiaoyan
    INTERNATIONAL TRANSACTIONS ON ELECTRICAL ENERGY SYSTEMS, 2017, 27 (01):
  • [28] An Approach to Estimate the Error of Oscillator Time-Domain Analysis
    Biryukov, Vadim N.
    Pilipenko, Alexandr M.
    PROCEEDINGS OF IEEE EAST-WEST DESIGN & TEST SYMPOSIUM (EWDTS 2013), 2013,
  • [29] A new time-domain approach to the analysis of scattering problems
    Mayergoyz, ID
    Andrei, P
    Hakim, B
    IEEE TRANSACTIONS ON MAGNETICS, 2002, 38 (02) : 327 - 332
  • [30] A Concise Approach of Soil Models for Time-Domain Analysis
    Lopes Salvador, Joao Pedro
    Alipio, Rafael
    Lima, Antonio C. S.
    Correia de Barros, Maria Teresa
    IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, 2020, 62 (05) : 1772 - 1779