DocumentCode :
1298813
Title :
Circuits operation control and overloads protection: power cables equivalent ampacities
Author :
Parise, Giuseppe ; Martirano, Luigi
Author_Institution :
Dept. of Electr. Eng., Rome Univ., Italy
Volume :
36
Issue :
1
fYear :
2000
Firstpage :
22
Lastpage :
29
Abstract :
The evaluation of the ampacity of electric power cables and the overload protection are currently based on criteria, to which the operation of the circuits will have to satisfy each time like the first time, without self-memory of the way of life, without discounts or debts correspondent to the actual profile load, certainly different from a steady-state line. The number and the duration of the emergency overload events are taken statistically into account (IEC rules) or are fixed in advance for an allowable average time per year over the life of the cable (ICEA approach). To enhance these criteria, this paper suggests a method to define in the low-voltage range an equivalent prospective power cables ampacity, based on the global allowable cables life loss and considering the performance in the time. Since still monitoring and memorizing the actual life of power cables are not possible, the paper proposes a simple and quick evaluation method for the duty cycles characterized or approximated by load phases of continuous currents. The aim of this paper is to try to help the feeling of performance and behavior of insulated power cables. In reference to the prospective actual load profile of each circuit or grouping of circuits, this feeling is very useful for the designer to presuppose how much the power cable size will be allowable and for the maintenance operator to presume during the life of the circuits the real conditions of the power cables
Keywords :
power cable insulation; protection; ICEA approach; IEC rules; cables life loss; circuits operation control; continuous currents; duty cycles; emergency overload events; equivalent prospective power cables ampacity; insulated power cables; load phases; low-voltage range; overloads protection; power cable size; power cables equivalent ampacities; Aging; Cable insulation; Circuits; Conducting materials; IEC; Performance loss; Power cables; Protection; Steady-state; Temperature;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.821791
Filename :
821791
Link To Document :
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