DocumentCode
1240686
Title
Earth ground resistance testing for low-voltage power systems
Author
Michaels, K.M.
Author_Institution
Consumers Power Co., Holt, MI
Volume
31
Issue
1
fYear
1995
Firstpage
206
Lastpage
213
Abstract
A quality connection to earth through the grounding electrode system for a commercial or industrial facility´s power system is necessary for: (1) providing a low impedance path for lightning stroke current dissipation, (2) the reduction of “Step” and “Touch” potentials under line-to-earth fault conditions, and (3) the dissipation of electrostatic charges. Previously accepted test methods for resistance measurements of a grounding electrode system may indicate incorrectly that high or low resistance connections have been established. Testing of several grounding electrode systems was conducted by the author. This paper presents results of these tests to illustrate deficiencies in grounding electrode resistance test methods that have been accepted previously. Inaccuracies of various test instrument principles are also discussed. The author found that close attention to the test procedure must be given to ensure that an accurate measurement is achieved. This paper provides recommendations on measurement techniques to minimize errors and ensure valid test results
Keywords
earth electrodes; electric resistance measurement; electrical faults; measurement errors; power system measurement; earth ground resistance testing; electrostatic charge dissipation; grounding electrode system; high resistance connections; lightning stroke current dissipation; line-to-earth fault; low impedance path; low resistance connections; low-voltage power systems; measurement errors minimisation; resistance measurements; step potentials reduction; touch potentials reduction; Electrical resistance measurement; Electrodes; Grounding; Impedance; Industrial power systems; Lightning; Power system faults; Power system measurements; Power systems; System testing;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/28.363027
Filename
363027
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