Magnetic Field and Dosimetric Study at Intermediate Frequency Range Using the Coil Source Model(Electromagnetic Theory)
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概要
- 論文の詳細を見る
In this paper, the magnetic field properties and the dosimetry at intermediate frequency (21kHz) for an induction heater are investigated with the coil model, which is prescribed as substitute source model in the European standard EN50366 (CENELEC). The accuracy of the magnetic field vectors and the values of the induced current density, which are achieved with the coil model, are compared with the results of a realistic model of the induction heater obtained from the equivalent source model. It is shown that the coil model coincides well for the magnitude of the magnetic field strength around the induction heater. On the other hand, the dominant field vector of the coil model differs significantly from the real induction heater, which leads to induced current densities in the body model which are three time larger. Owing to these results, the applicability of the coil model prescribed in the EN50366 is confirmed for the induction heater.
- 社団法人電子情報通信学会の論文
- 2006-04-01
著者
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Landstorfer Friedrich
University Of Stuttgart Germany
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Landstorfer Friedrich
Institut Fuer Hochfrequenztechnik University Of Stuttgart
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Landstorfer Friedrich
Institue Fuer Hochfrequenztechnik University Of Stuttgart
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Landstorfer Friedrich
University Of Stuttgart Institute Of Radio Frequency Technology
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Landstorfer Friedrich
University Of Stuugart Germany
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HASHIMOTO OSAMU
Department of Surgery, Yamato City Hospital
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Landstorfer Friedrich
Univ. Stuttgart Stuttgart Deu
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NISHIZAWA Shinichiro
Institut fuer Hochfrequenztechnik, University of Stuttgart
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MATSUMOTO Kouta
Department of Electrical and Electronic Engineering, Aoyama Gakuin University
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Hashimoto Osamu
Department Of Electrical Engineering And Electronics Aoyama Gakuin University
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Hashimoto Osamu
Aoyama Gakuin Univ. Sagamihara‐shi Jpn
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Hashimoto O
Department Of Electrical And Electronic Engineering Aoyama Gakuin University
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Nishizawa S
Institut Fuer Hochfrequenztechnik University Of Stuttgart
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Hashimoto Osamu
Department Of Applied Physics Seieki University
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Hashimoto Osamu
Department of Electrical and Electronic Engineering, Aoyama Gakuin University
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