Title :
Time-domain study of a shielding cable system with a nonlinear load
Author :
Tang, Hong ; Scuka, Viktor
Author_Institution :
Inst. of High Voltage Res., Uppsala Univ., Sweden
fDate :
8/1/1999 12:00:00 AM
Abstract :
An impulse current of several kiloamperes was injected to the shield of a shielded cable, which was terminated by a varistor. The induced voltage on the inner conductor caused by this impulse current reaches an amplitude in excess of the varistor´s threshold level. The clamped voltage across the varistor and the injected current have been studied for different termination conditions of the shielding cable. Furthermore, this paper also presents the use of a lumped circuit to simulate the transfer impedance of an “electrically short” shielded cable in the time domain. In combination with the varistor circuit model, the shielded cable with the nonlinear load, a varistor, was also simulated straightforwardly in the time domain. Good agreement was found between the measured voltage and current oscillograms and the calculated waveforms. It is thereby demonstrated the validity of the developed lumped circuit model for the transfer impedance of a shielded cable
Keywords :
cable shielding; cable testing; electromagnetic shielding; impulse testing; lumped parameter networks; time-domain analysis; varistors; impulse current injection; lumped circuit model; nonlinear load; shielding cable system; termination conditions; time-domain study; transfer impedance; varistor circuit model; Cable shielding; Circuit simulation; Electromagnetic coupling; Electromagnetic fields; Frequency domain analysis; Impedance; Power cables; Time domain analysis; Varistors; Voltage;
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on