Title :
Arc fault detection scheme for 42-V automotive DC networks using current shunt
Author :
Naidu, Malakondaiah ; Schoepf, Thomas J. ; Gopalakrishnan, Suresh
Author_Institution :
Delphi Res. Labs, Shelby Township, MI
fDate :
5/1/2006 12:00:00 AM
Abstract :
Introduction of higher dc system voltage distribution networks, such as the 42-V PowerNet in future passenger vehicles appears to be an unavoidable consequence of meeting the increasing future electrical power demand. Higher voltage electrical distribution networks in vehicles force considerable component and system changes regarding electrical safety and reliability. In the event of an arc fault, e.g., when a wire is pinched or cut, or disengaged terminals under load etc., the resulting current may be significantly lower than the trip current of the protection devices such as fuses and circuit breakers. In these cases either the fault is cleared late (depending on the time/current characteristics of the fuse) or, in some cases the fault may not be cleared at all. A cost effective arc fault detection scheme using input side current shunt was developed, built, and tested with different loads including motor loads to clear both parallel and series arc faults in a 42-V dc network. This paper presents the details of the developed arc fault detection scheme and test results under several fault conditions
Keywords :
arcs (electric); automotive engineering; electrical safety; fault diagnosis; power distribution; reliability; 42 V; arc fault detection scheme; automotive DC networks; circuit breakers; current shunt; dc system voltage distribution networks; electrical reliability; electrical safety; fuses; Automotive engineering; Circuit faults; Electrical fault detection; Electrical safety; Fault detection; Fuses; Power demand; Power system reliability; Vehicle safety; Voltage; 42-V PowerNet; Arc fault detection; arc faults; connectors; dc; fuses; hot plugging; relays; switches;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2006.872385