Starting from a 2D finite element formulation for the computation of eddy currents in and around a submarine HVDC cable, we describe a procedure for extracting the sea and seabed return impedance parameters to be used in a network description of the system. A model order reduction approach, known as the Cauer Ladder Network method, is applied to extract a network representation of the earth return impedance of an HVDC submarine cable in a realistic scenario. In this work, the proposed method is described in detail, and the obtained numerical results are compared with well-known analytical formulas, showing how the extracted equivalent circuit approximates the reference results within acceptable tolerance.

Cauer Ladder Network Representation of the Earth Return Impedance of Submarine HVDC Cables Based on FEM

R. Tang;L. Di Rienzo;C. de Falco
2025-01-01

Abstract

Starting from a 2D finite element formulation for the computation of eddy currents in and around a submarine HVDC cable, we describe a procedure for extracting the sea and seabed return impedance parameters to be used in a network description of the system. A model order reduction approach, known as the Cauer Ladder Network method, is applied to extract a network representation of the earth return impedance of an HVDC submarine cable in a realistic scenario. In this work, the proposed method is described in detail, and the obtained numerical results are compared with well-known analytical formulas, showing how the extracted equivalent circuit approximates the reference results within acceptable tolerance.
2025
Proceedings of the AEIT HVDC International Conference 2025
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1291688
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