DocumentCode :
1367816
Title :
Investigating the Option of Removing the Antialiasing Filter From Digital Relays
Author :
Brahma, Sukumar M. ; De Leon, Phillip L. ; Kavasseri, Rajesh G.
Author_Institution :
Klipsch Sch. of Electr. & Comput. Eng., New Mexico State Univ., Las Cruces, NM, USA
Volume :
24
Issue :
4
fYear :
2009
Firstpage :
1864
Lastpage :
1868
Abstract :
Digital relays traditionally employ sampling rates of less than 100 samples/cycle. In order to avoid aliasing due to fault transients, these relays employ an analog antialiasing filter before critical-sampling (Nyquist rate) the input waveforms coming from instrument transformers. In many applications of electrical engineering, oversampling (greater than the Nyquist rate) has long been used to simplify the requirements of an antialiasing filter with a sharp cutoff; in some cases, the filter can even be eliminated. This paper investigates this option for a digital relay. The performance of a traditional digital relay is compared with a method that uses oversampling without using an antialiasing filter. By processing a comprehensive array of fault waveforms from Electromagnetic Transients Program simulations, a suitable oversampling rate is suggested. A comparison of phasor estimates using the traditional relay and the proposed method is made for different operating and fault conditions. The results suggest that oversampling can eliminate the antialiasing filter traditionally employed in digital relays.
Keywords :
EMTP; fault diagnosis; phase estimation; power filters; power system relaying; Electromagnetic Transients Program simulation; Nyquist rate; analog antialiasing filter; digital relays; electrical engineering; fault transient; instrument transformers; phasor estimation; power system protection; Analog-digital conversion; Digital filters; Digital relays; Discrete Fourier transforms; Frequency estimation; Power system relaying; Power system transients; Protective relaying; Sampling methods; Voltage; Aliasing; analog-to-digital converter (ADC); digital relay; discrete Fourier transform (DFT); power system protection;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2009.2028802
Filename :
5235740
Link To Document :
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