DocumentCode :
1431902
Title :
Estimation of Induction Motor Operating Power Factor From Measured Current and Manufacturer Data
Author :
Ukil, Abhisek ; Bloch, Richard ; Andenna, Andrea
Author_Institution :
ABB Corp. Res., Baden-Daettwil, Switzerland
Volume :
26
Issue :
2
fYear :
2011
fDate :
6/1/2011 12:00:00 AM
Firstpage :
699
Lastpage :
706
Abstract :
Three-phase induction (asynchronous) motors (IM) are industrial work-horses, making the protection of IM a very important topic. IM protection devices typically monitor the motor current and/or voltage to provide the motor protection functionalities like current overload, over/under voltage, etc. One of the interesting parameters to monitor is the operating power factor (PF) of the IM, which provides better underload protection compared to the motor current-based approaches. Traditionally, PF estimation would require both the voltage and the current measurements in order to apply the displacement method. In this paper, we present a method of determining the operating PF of the IM using only the measured current and the manufacturer data that are typically available from the nameplate and/or datasheet. Experimental results are presented to substantiate the feasibility of the proposed method, validated alongside the state of the art PF estimation methods. Operational PF can be effectively used for underload detection, like in a pump application, or PF compensation for improving the power quality.
Keywords :
electric current measurement; induction motor protection; power factor; power supply quality; IM; IM protection; PF estimation; current measurements; manufacturer data; motor current-based approaches; power factor; power quality; three-phase induction motor; underload protection; voltage measurements; Current measurement; Induction motors; Loading; Power measurement; Reactive power; Stators; Voltage measurement; $cos phi$ ; Asynchronous motor; current measurement; induction motor (IM); nameplate; power factor (PF); power factor compensation; pump protection; reactive power; zero-crossing (ZC);
fLanguage :
English
Journal_Title :
Energy Conversion, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8969
Type :
jour
DOI :
10.1109/TEC.2010.2098408
Filename :
5696748
Link To Document :
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