DocumentCode :
1466881
Title :
Accuracy Analysis of Algorithms Adopted in Voltage Dip Measurements
Author :
Gallo, Daniele ; Landi, Carmine ; Luiso, Mario
Author_Institution :
Dept. of Inf. Eng., Second Univ. of Naples, Aversa, Italy
Volume :
59
Issue :
10
fYear :
2010
Firstpage :
2652
Lastpage :
2659
Abstract :
This paper analyzes the accuracy of algorithms commonly adopted in instruments devoted to the detection and characterization of voltage dips (which are also called sags). This analysis is particularly interesting, because the results of dip measurements are utilized for calculation of severity levels and site indexes, which are important parameters not only in the assessment of the quality level of power supply but also in the selection of equipment with proper intrinsic immunity. Instruments for dip measurement still have unresolved technical and theoretical issues related to the characterization of their metrological performances, so it can be found that different instruments are significantly in disagreement in some actual measurements. This paper moves a step into the direction of deepening the knowledge about the measurement of voltage dips, pointing out the limits incident to the adoption of the detection algorithms indicated in the standards. It starts with a discussion about parameters that characterize voltage dips, in agreement with the standard. Then, analytical calculations of some systematic deviations in the event characterization, which are introduced by the most diffused dip detection algorithms, in simplified measurement situations, are presented, underlining their remarkable impact. The obtained relations are experimentally verified on a commercial power quality instrument, forecasting its systematic deviations.
Keywords :
power supply quality; voltage measurement; algorithms accuracy analysis; commercial power quality instrument; dip detection algorithms; power supply quality; site indexes; voltage dip measurement; Algorithm design and analysis; Detection algorithms; Instruments; Measurement standards; Particle measurements; Performance evaluation; Power measurement; Power supplies; Voltage fluctuations; Voltage measurement; Measurement accuracy; power quality instrument; sag; voltage dip;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2010.2045256
Filename :
5445021
Link To Document :
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