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2019 | OriginalPaper | Buchkapitel

Fusion Science and Technology of Electromagnetic Field [1]

verfasst von : Keisuke Fujisaki

Erschienen in: Magnetic Material for Motor Drive Systems

Verlag: Springer Singapore

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Abstract

Fusion science and technology of electromagnetic field is proposed here to obtain a higher efficient and downsizing electrical motor drive system for example. Motor drive system does not consist of only one technology such as electrical motor, control, power electronics, material, and production. “Electromagnetic energy apparatus,” “electromagnetic field application,” and “electromagnetic material” are considered to be related by a transfer of “thing.” Each component requires multi-time for power electronics, multi-physics, and multi-scale, respectively. They should be considered to be a fusion science and technology such as electrical engineering, material, electromagnetic field, fluid dynamics, or so. So, they are called first-class fusion. The relation among the apparatus, the application, and the material is considered to be a relation of purpose and means. The purpose introduces what to make, and the means introduces how to make. So, they are called second-class fusion. It is usually difficult and necessary for a lot of time to learn plural department at the same time in the conventional study system. So, some special study system may be required for them.

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Literatur
1.
Zurück zum Zitat Fujisaki, K.: Fusion technology of electromagnetic field and motor drive system. In: The 2016 Annual Meeting of the Institute of Electrical Engineering o Japan, pp. 5–025. Fukuoka, March 2016. (in Japanese) Fujisaki, K.: Fusion technology of electromagnetic field and motor drive system. In: The 2016 Annual Meeting of the Institute of Electrical Engineering o Japan, pp. 5–025. Fukuoka, March 2016. (in Japanese)
2.
Zurück zum Zitat Investigating R&D Committee of Magnetic Material for Electromagnetic Actuator: Magnetic Material and Its Evaluation Technology for Electromagnetic Actuator. Technical report of IEEJ, No. 1397,2017.11 (in Japanese) Investigating R&D Committee of Magnetic Material for Electromagnetic Actuator: Magnetic Material and Its Evaluation Technology for Electromagnetic Actuator. Technical report of IEEJ, No. 1397,2017.11 (in Japanese)
3.
Zurück zum Zitat Fujisaki, K.: Necessity and problem of Magnetic Material for Electromagnetic Actuator System. In: The 2015 Annual Meeting of the Institute of Electrical Engineering o Japan, S22(1)–S22(4), 5-S22-1, March, 2015. (in Japanese) Fujisaki, K.: Necessity and problem of Magnetic Material for Electromagnetic Actuator System. In: The 2015 Annual Meeting of the Institute of Electrical Engineering o Japan, S22(1)–S22(4), 5-S22-1, March, 2015. (in Japanese)
4.
Zurück zum Zitat Fujisaki, K.: Microwave processing. Handbook of Electrical Engineering, 7th edn. Chapter 41, Section 4.4, pp. 2106–2107 (2013). (in Japanese) Fujisaki, K.: Microwave processing. Handbook of Electrical Engineering, 7th edn. Chapter 41, Section 4.4, pp. 2106–2107 (2013). (in Japanese)
5.
Zurück zum Zitat Fujisaki, K.: Energy significance of microwave processing. In: The 12th JEMEA (Japan Society of Electromagnetic Wave Energy Applications) Symposium (Sympo2015), O-26, pp. 70–71, 2015.11.20. (in Japanese) Fujisaki, K.: Energy significance of microwave processing. In: The 12th JEMEA (Japan Society of Electromagnetic Wave Energy Applications) Symposium (Sympo2015), O-26, pp. 70–71, 2015.11.20. (in Japanese)
7.
Zurück zum Zitat Fujisaki, K.: Application of electromagnetic field multi-physical model to steel making plant. In: The 2009 Annual Meeting of the Institute of Electrical Engineering of Japan, No. 5–209 (2009). (in Japanese) Fujisaki, K.: Application of electromagnetic field multi-physical model to steel making plant. In: The 2009 Annual Meeting of the Institute of Electrical Engineering of Japan, No. 5–209 (2009). (in Japanese)
8.
Zurück zum Zitat Fujisaki, K., Hirayama, R., Wajima, K.: Multi physical model application to process solution in electromagnetic field technique. Nippon. Steel Tech. Rep. 379, 54–58 (2003). (in Japanese) Fujisaki, K., Hirayama, R., Wajima, K.: Multi physical model application to process solution in electromagnetic field technique. Nippon. Steel Tech. Rep. 379, 54–58 (2003). (in Japanese)
9.
Zurück zum Zitat Fujisaki, K.: Electromagnetic field multi-scale by equivalent material constants. Trans. Jpn. Soc. Mech. Eng. (JSME), 119(1176), 20–23 (2016). (in Japanese) Fujisaki, K.: Electromagnetic field multi-scale by equivalent material constants. Trans. Jpn. Soc. Mech. Eng. (JSME), 119(1176), 20–23 (2016). (in Japanese)
10.
Zurück zum Zitat Fujisaki, K., Hirayama, R., Nemoto, Y.: Electromagnetic steel solution in electromagnetic field technique. Nippon. Steel Tech. Rep. 379, 70–74 (2003). (in Japanese) Fujisaki, K., Hirayama, R., Nemoto, Y.: Electromagnetic steel solution in electromagnetic field technique. Nippon. Steel Tech. Rep. 379, 70–74 (2003). (in Japanese)
11.
Zurück zum Zitat Fujisaki, K.: Magnetic multi-scale for small and high efficiency motor. In: The 2012 Annual Meeting of the Institute of Electrical Engineering o Japan, No. 5–008 (2012). (in Japanese) Fujisaki, K.: Magnetic multi-scale for small and high efficiency motor. In: The 2012 Annual Meeting of the Institute of Electrical Engineering o Japan, No. 5–008 (2012). (in Japanese)
Metadaten
Titel
Fusion Science and Technology of Electromagnetic Field [1]
verfasst von
Keisuke Fujisaki
Copyright-Jahr
2019
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-32-9906-1_6

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