• DocumentCode
    2053042
  • Title

    THD and SNR tests using the simplified Volterra series with adaptive algorithms

  • Author

    Hsieh, Luke S L ; Grochowski, Andrew

  • Author_Institution
    AT&T Bell Labs., Allentown, PA, USA
  • fYear
    1995
  • fDate
    21-25 Oct 1995
  • Firstpage
    364
  • Lastpage
    369
  • Abstract
    A test technique for the total harmonic distortion (THD) and signal to noise ratio (SNR) is proposed. A modified Volterra series using harmonics in place of powers of the sinusoidal input is used to model the nonlinear characteristic of the device under test (DUT). The least-mean square (LMS) adaptive algorithm is used to identify the DUT model. While maintaining comparable accuracy this technique provides a more flexible test procedure than conventional methods, in terms of the frequency resolution, the number of samples, and the sampling rate. It outperforms conventional methods when there is a bin energy leakage, which occurs in a non-coherent system. It requires a lower number of data points, as a result, less data acquisition time is needed and test time is reduced. In addition, it is real-time computing while other conventional methods post-process blocks of data
  • Keywords
    Volterra series; data acquisition; harmonic distortion; integrated circuit testing; least mean squares methods; mixed analogue-digital integrated circuits; SNR tests; THD; adaptive algorithms; bin energy leakage; data acquisition time; device under test; frequency resolution; least-mean square adaptive algorithm; noncoherent system; sampling rate; simplified Volterra series; total harmonic distortion; Adaptive algorithm; Energy resolution; Frequency; Least squares approximation; Power system harmonics; Power system modeling; Sampling methods; Signal to noise ratio; Testing; Total harmonic distortion;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Test Conference, 1995. Proceedings., International
  • Conference_Location
    Washington, DC
  • ISSN
    1089-3539
  • Print_ISBN
    0-7803-2992-9
  • Type

    conf

  • DOI
    10.1109/TEST.1995.529861
  • Filename
    529861