IEEE STD 80-2000 PDF

15 May IEEE Std 80™ (Revision of. IEEE Std /. Incorporates. IEEE Std /Cor ). IEEE Guide for Safety in AC Substation. Earthing Calculation Details to IEEE Std. the investor and Standard: IEEE 80 – Guide for Safety in Substation Grounding. Specific resistance is. Abstract –This paper discusses the major changes in the version of IEEE Guide for Safety in AC Substation. Grounding (Standard ) with respect to .

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The effects of uncertain inputs within the proposed model are examined for various assumed levels of overall uncertainties. We use cookies to help provide and enhance our service and tailor content and ads.

Three dimensional grounding grid design – Semantic Scholar

Abstract The paper presents the application of interval mathematics as a new method to, rigorously, address uncertainties associated with designing substation earthing system.

D degrees from Shoubra Faculty of Engineering, Benha University at, and respectively.

His area of interest is study of electric and magnetic fields under transmission lines and at right of way, electrostatic field effects of EHV lines on objects, partial discharge measurements and grounding and lightning protection system design. Abstract Substation grounding is a very important aspect in a substation design which forms a safe grounding grid system besides functioning as a means of dissipating currents to the surrounding ground during normal and fault conditions, also prevents the ground potential rise during a fault from creating dangerous potential gradients on the substation ground surface that can endanger a life of a person in the vicinity of the grounded facility.

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Recommended articles Citing articles 0. While several methods exist to determine the important factors for personnel safety in and around substations such as earth ifee, different potentials of substation earthing grid, these methods usually require data which may be uncertain in nature. To assess the relative contribution of each uncertain input, an interval sensitivity analysis is carried out.

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Substation grounding is a very important aspect in a substation design which forms a safe grounding grid system besides functioning iede a means of dissipating currents to the surrounding ground during normal and fault conditions, also prevents the ground potential rise during a fault from creating dangerous potential gradients on the substation ground surface that can endanger a life of a person in the vicinity of the grounded facility.

The paper presents the application of interval mathematics 80-000 a new method to, rigorously, address uncertainties associated with designing substation earthing system.