Fast Computation of the Series Impedance of Power Cables with Inclusion of Skin and Proximity Effects
arXiv:1303.5452 · doi:10.1109/TPWRD.2013.2267098
Abstract
We present an efficient numerical technique for calculating the series impedance matrix of systems with round conductors. The method is based on a surface admittance operator in combination with the method of moments and it accurately predicts both skin and proximity effects. Application to a three-phase armored cable with wire screens demonstrates a speed-up by a factor of about 100 compared to a finite elements computation. The inclusion of proximity effect in combination with the high efficiency makes the new method very attractive for cable modeling within EMTP-type simulation tools. Currently, these tools can only take skin effect into account.
Submitted for publication to IEEE Transactions on Power Delivery. Update: Published in IEEE Transactions on Power Delivery with the revised title of "An Equivalent Surface Current Approach for the Computation of the Series Impedance of Power Cables with Inclusion of Skin and Proximity Effects"
Cited by in corpus (4)
- MoM-SO: a Complete Method for Computing the Impedance of Cable Systems Including Skin, Proximity, and Ground Return Effects
- Skin Effect Modeling in Conductors of Arbitrary Shape Through a Surface Admittance Operator and the Contour Integral Method
- Accurate Impedance Calculation for Underground and Submarine Power Cables using MoM-SO and a Multilayer Ground Model
- Proximity-Aware Calculation of Cable Series Impedance for Systems of Solid and Hollow Conductors