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- W2757482014 abstract "The largely inductively reactive nature of our electricity networks, and generally fast operating time of protection systems, means the short circuit response of the current waveform is anything but symmetrical. In reality the fault current asymmetry of the waveform produces a real increase in the rms equivalent current magnitude due to an imposed decaying DC offset. From an earthing system perspective this larger rms current creates higher earthing related voltages and should be considered in order to ensure worst case hazard and equipment over-voltage conditions are assessed. Or not? It is the experience of the authors that decrement factor is generally misunderstood and frequently misapplied. Even some of the world's most prominent earthing software houses incorrectly apply X/R ratio to earthing assessments. In many other examples the X/R ratio is not even considered. Very rarely indeed, when X/R ratio is considered, is it considered properly! There is also an argument which supports a case for this decrement factor to NOT be applied in areas of earthing system analysis where inductively coupled paths are considered, for instance pipeline induction studies and coupling into earth return paths such as OHEWs or cable sheaths. This paper presents a renewed look at decrement factor and X/R ratio and will be a useful guide for those earthing practitioners wanting to improve their understanding in relation to this area and also to ensure such errors are obviated from their work." @default.
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- W2757482014 date "2016-01-01" @default.
- W2757482014 modified "2023-09-23" @default.
- W2757482014 title "Decrement to the detriment of earthing" @default.
- W2757482014 hasPublicationYear "2016" @default.
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