In this work, a model of a multi-layer high-Tc superconducting (HTS) cable that computes the current distribution across layers as well as the AC loss is presented. Analyzed is the case of a four-layer cable, but the developed method can be applied to a cable with an arbitrary number of layers. The cable is modelled by an equivalent circuit consisting of the following elements: nonlinear resitances, linear self and mutual inductances, as well as nonlinear, hysteretic inductances. The first take into account the typical current-voltage relation for superconductors, the second introduce coupling among the layers and depend on the geometrical parameters of the cable, the third describe the hysteretic behaviour of superconductors. In the presen...
This article presents a numerical model based on the definition of the scalar and vector potentials ...
© 2016 IEEE. This paper presents a coupled field-circuit analysis method for the high temperature su...
Challenges, linked with FEM modelling of HTS power cables, include the long computational time requi...
AbstractIn this study, we present a new calculation model of AC loss in a high-temperature supercond...
This paper presents a hysteresis model for Type-II high temperature superconductor (HTS) by using si...
The finite element method has been employed in order to simulate the behaviour of a HTS cable for tr...
© 2017 IEEE. This paper presents a coupled field-circuit analysis method for the high-temperature su...
For an accurate estimation of the AC losses of superconducting triaxial cables, in this paper we pre...
For an accurate estimation of the AC losses of superconducting triaxial cables, in this paper we pre...
For an accurate estimation of the AC losses of superconducting triaxial cables, in this paper we pre...
For an accurate estimation of the AC losses of superconducting triaxial cables, in this paper we pre...
To replace conventional normal conducting solutions in electrotechnical devices, high-Tc superconduc...
本文データは学会の許諾に基づきJ-stageから複製したものである。The AC loss characteristics of high Tc superconductors are reviewe...
Superconducting YBCO cables are the latest step in the development of their kind, and their viabilit...
AbstractIn this study, we present a new calculation model of AC loss in a high-temperature supercond...
This article presents a numerical model based on the definition of the scalar and vector potentials ...
© 2016 IEEE. This paper presents a coupled field-circuit analysis method for the high temperature su...
Challenges, linked with FEM modelling of HTS power cables, include the long computational time requi...
AbstractIn this study, we present a new calculation model of AC loss in a high-temperature supercond...
This paper presents a hysteresis model for Type-II high temperature superconductor (HTS) by using si...
The finite element method has been employed in order to simulate the behaviour of a HTS cable for tr...
© 2017 IEEE. This paper presents a coupled field-circuit analysis method for the high-temperature su...
For an accurate estimation of the AC losses of superconducting triaxial cables, in this paper we pre...
For an accurate estimation of the AC losses of superconducting triaxial cables, in this paper we pre...
For an accurate estimation of the AC losses of superconducting triaxial cables, in this paper we pre...
For an accurate estimation of the AC losses of superconducting triaxial cables, in this paper we pre...
To replace conventional normal conducting solutions in electrotechnical devices, high-Tc superconduc...
本文データは学会の許諾に基づきJ-stageから複製したものである。The AC loss characteristics of high Tc superconductors are reviewe...
Superconducting YBCO cables are the latest step in the development of their kind, and their viabilit...
AbstractIn this study, we present a new calculation model of AC loss in a high-temperature supercond...
This article presents a numerical model based on the definition of the scalar and vector potentials ...
© 2016 IEEE. This paper presents a coupled field-circuit analysis method for the high temperature su...
Challenges, linked with FEM modelling of HTS power cables, include the long computational time requi...