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Analytical and numerical simulation on charging behavior of no-insulation REBCO pancake coil

초록

영어

This paper presents analytical and numerical simulation approaches on charging characteristics of no-insulation (NI) REBCO pancake coil by using the equivalent circuit model to estimate magnetic performance response in the coil. The analytical methods provide closed form or definite solution in the form of complete mathematical expressions but they are hard to solve the complex problems. Numerical methods have become popular with the development of the computing capabilities to solve the problems which are impossible or very hard to solve analytically. First of all, the equivalent circuit model are proposed to develop the simulation code for both analytical and numerical method. The charging test was performed under critical current to obtain magnetic field induced and terminal voltage through the radial as well as spiral current paths within the coil. To verify the validity of both proposed methods, the simulation results were compared and discussed with the experimental results.

목차

Abstract
1. INTRODUCTION
2. FABRICATION OF AN NI REBCO COIL
3. EQUIVALENT CIRCUIT MODEL AND SIMULATION METHODS
3.1. Analytical Method
3.2. Numerical Method
4. RESULTS AND DISCUSSION
4.1. Sudden Discharge Test
4.2. Charging Test
4. CONCLUSION
ACKNOWLEDGMENT
REFERENCES

저자정보

  • Huu Luong Quach Department of Electrical Engineering, Jeju National University, Jeju, S.Korea
  • Ji Hyung Kim Department of Electrical Engineering, Jeju National University, Jeju, S.Korea
  • Yoon Seok Chae Department of Electrical Engineering, Jeju National University, Jeju, S.Korea
  • Jae Hyung Moon Department of Electrical Engineering, Jeju National University, Jeju, S.Korea
  • Jung Hyup Ko Department of Electrical Engineering, Jeju National University, Jeju, S.Korea
  • Hyung-Wook Kim Korea Electrotechnology Research Institute, Changwon, Korea
  • Seog-Whan Kim Korea Electrotechnology Research Institute, Changwon, Korea
  • Young-Sik Jo Korea Electrotechnology Research Institute, Changwon, Korea
  • Ho Min Kim Department of Electrical Engineering, Jeju National University, Jeju, S.Korea

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