Theoretical analysis of high temperature superconducting induction/synchronous machine based on the nonlinear electrical equivalent circuit

T. Nakamura, T. Nishimura, K. Nagao, K. Matsumura, Y. Ogama
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引用次数: 8

Abstract

This paper presents the performance of high temperature superconducting induction/synchronous machine (HTS-ISM) based on the nonlinear electrical equivalent circuit. The structure of the HTS-ISM is the same with that of the squirrel-cage type induction machine, and the secondary windings are fabricated by the use of the HTS wires. It has already been shown based on the analysis and experiments that even this simple replacement realises the excellent improvement of the performances, such as coexistence of slip and synchronous rotations, higher efficiency thanks to the synchronous operation, robustness against the overload. In this paper, the experimental results of torque vs. slip curve of the HTS-ISM is quantitatively expressed based on the electrical equivalent circuit, which takes into account the nonlinear current transport property as well as so-called deep-slot effect of the HTS rotor bars.
基于非线性等效电路的高温超导感应/同步电机理论分析
本文介绍了基于非线性等效电路的高温超导感应/同步电机的性能。HTS- ism的结构与鼠笼式感应电机相同,二次绕组采用HTS导线制作。分析和实验表明,即使是这种简单的更换,也能实现滑移和同步旋转共存、同步运行带来的更高效率、抗过载的鲁棒性等性能的显著改善。本文考虑了高温超导转子棒的非线性电流输运特性和所谓的“深槽效应”,基于等效电路定量表达了高温超导的转矩-转差曲线的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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