| 講演抄録/キーワード |
| 講演名 |
2015-06-26 14:55
Influence of Incident Electric Field to SAR in a Human Body Close to a Wireless Power Transfer System in MHz-Band Frequency ○Jerdvisanop Chakarothai(NICT)・Takuya Iwamoto(TUAT)・Kanako Wake・Soichi Watanabe(NICT)・Takuji Arima・Toru Uno(TUAT) EMCJ2015-29 |
| 抄録 |
(和) |
Wireless power transfer (WPT) technology has gained much attraction due to its wide applications. Since a high power is actually applied into WPT systems, strong EM field is then created around the systems. An exposure evaluation of human body in vicinity to the WPT systems is of mandatory in consequence. Although the magnetic field is actually a dominant exposure factor, in some case, a strong incident electric near-field is not negligible. In this study, we investigate and quantify influence of incident electric field to absorption energy into human body which is placed close to two type of MHz-band wireless power transfer systems; solenoid-type and spiral-type, by comparing the results obtained with the full-wave finite-difference time-domain (FDTD) method to those by the impedance method which is based on a quasi-static approximation. It has been shown that, the effect of incident electric field is comparably large and cannot be neglected, i.e. for an exposure from such solenoid-type WPT system considered in our study. |
| (英) |
Wireless power transfer (WPT) technology has gained much attraction due to its wide applications. Since a high power is actually applied into WPT systems, strong EM field is then created around the systems. An exposure evaluation of human body in vicinity to the WPT systems is of mandatory in consequence. Although the magnetic field is actually a dominant exposure factor, in some case, a strong incident electric near-field is not negligible. In this study, we investigate and quantify influence of incident electric field to absorption energy into human body which is placed close to two type of MHz-band wireless power transfer systems; solenoid-type and spiral-type, by comparing the results obtained with the full-wave finite-difference time-domain (FDTD) method to those by the impedance method which is based on a quasi-static approximation. It has been shown that, the effect of incident electric field is comparably large and cannot be neglected, i.e. for an exposure from such solenoid-type WPT system considered in our study. |
| キーワード |
(和) |
無線電力伝送 / ばく露評価 / 比吸収率 / 時間領域有限差分法 / インピーダンス法 / モーメント法 / / |
| (英) |
Wireless power transfer / exposure assessment / specific absorption rate / FDTD method / impedance method / method of moments / / |
| 文献情報 |
信学技報, vol. 115, no. 114, EMCJ2015-29, pp. 67-72, 2015年6月. |
| 資料番号 |
EMCJ2015-29 |
| 発行日 |
2015-06-18 (EMCJ) |
| ISSN |
Print edition: ISSN 0913-5685 Online edition: ISSN 2432-6380 |
著作権に ついて |
技術研究報告に掲載された論文の著作権は電子情報通信学会に帰属します.(許諾番号:10GA0019/12GB0052/13GB0056/17GB0034/18GB0034) |
| PDFダウンロード |
EMCJ2015-29 |
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