DocumentCode
1603510
Title
Stochastic modeling of calibration drift in electrical meters
Author
Stuckman, B.E. ; Perttunen, C.D. ; Usher, J.S. ; McLaughlin, B.A.
Author_Institution
Dept. of Electr. & Ind. Eng., Louisville Univ., KY, USA
fYear
1991
Firstpage
530
Lastpage
536
Abstract
The drift in the calibration bias in an instrument can be modeled as a stochastic process, specifically, as the Wiener process. The probability distribution of this Wiener model can be found conditioned upon calibration at some time t 1. Bounds on the drift of the bias after calibration can be found as a function of time based upon an estimate of the parameter α, of the Wiener process. This parameter can be easily estimated based upon the collection of data calibration bias as a function of time. The statistical bounds on the calibration drift allow an instrument user to make his or her own choices as to the calibration interval based on the desired accuracy of the measurement
Keywords
calibration; measurement theory; parameter estimation; power measurement; probability; stochastic processes; wattmeters; HP 436 A power meter; Wiener process; accuracy; bias; calibration drift in electrical meters; calibration interval; parameter estimation; probability distribution; statistical bounds; stochastic process; Calibration; Error analysis; Industrial engineering; Instruments; Manufacturing; Measurement errors; Measurement uncertainty; Power system modeling; Random variables; Stochastic processes;
fLanguage
English
Publisher
ieee
Conference_Titel
Instrumentation and Measurement Technology Conference, 1991. IMTC-91. Conference Record., 8th IEEE
Conference_Location
Atlanta, GA
Print_ISBN
0-87942-579-2
Type
conf
DOI
10.1109/IMTC.1991.161650
Filename
161650
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