电工技术学报
電工技術學報
전공기술학보
TRANSACTIONS OF CHINA ELECTROTECHNICAL SOCIETY
2010年
7期
6-13
,共8页
杨庆新%陈海燕%徐桂芝%孙民贵%傅为农
楊慶新%陳海燕%徐桂芝%孫民貴%傅為農
양경신%진해연%서계지%손민귀%부위농
无接触%电能传输%感应耦合%磁共振耦合%辐射%研究进展
無接觸%電能傳輸%感應耦閤%磁共振耦閤%輻射%研究進展
무접촉%전능전수%감응우합%자공진우합%복사%연구진전
Contactless%power transfer%inductive coupling%magnetic resonant coupling%radiation%progress in research
无接触电能传输技术具有广泛的应用前景。目前主要的无接触电能传输方式有远场辐射、电磁共振和电磁感应直接耦合三种。远场辐射采取微波或激光来传递能量,频率最高,传输距离最远,效率也较低。电磁共振采用频率为MHz范围的谐振频率实现电能在波长范围内的中等距离高效率传输。基于电磁感应原理的电能传输技术相对比较成熟,频率较低,传输距离相对很小,传输效率较高。本文主要分析了这三种电能传输方式的特点及国内外研究现状,给出了该技术的应用前景及存在问题,也展示了一些研究结果。
無接觸電能傳輸技術具有廣汎的應用前景。目前主要的無接觸電能傳輸方式有遠場輻射、電磁共振和電磁感應直接耦閤三種。遠場輻射採取微波或激光來傳遞能量,頻率最高,傳輸距離最遠,效率也較低。電磁共振採用頻率為MHz範圍的諧振頻率實現電能在波長範圍內的中等距離高效率傳輸。基于電磁感應原理的電能傳輸技術相對比較成熟,頻率較低,傳輸距離相對很小,傳輸效率較高。本文主要分析瞭這三種電能傳輸方式的特點及國內外研究現狀,給齣瞭該技術的應用前景及存在問題,也展示瞭一些研究結果。
무접촉전능전수기술구유엄범적응용전경。목전주요적무접촉전능전수방식유원장복사、전자공진화전자감응직접우합삼충。원장복사채취미파혹격광래전체능량,빈솔최고,전수거리최원,효솔야교저。전자공진채용빈솔위MHz범위적해진빈솔실현전능재파장범위내적중등거리고효솔전수。기우전자감응원리적전능전수기술상대비교성숙,빈솔교저,전수거리상대흔소,전수효솔교고。본문주요분석료저삼충전능전수방식적특점급국내외연구현상,급출료해기술적응용전경급존재문제,야전시료일사연구결과。
Progress in researches and applications of contactless power transmission technology with great prospects is introduced. Radiation, magnetic resonant and induction coupling are the three main techniques used in contactless power transmission. The first one utilizing microwave or laser can transfer energy through a long distance like from outer space to the Earth, but with the lowest efficiency due to the reflection and absorption of the atmosphere which limited its applications. The magnetic resonant strong coupling system including two independent circuits with the same resonant frequency reaching MHz can realize power transfer between them almost without loss. The efficiency is pretty high and the distance can be several meters. As already applied in electric transformers, electric vehicle and Maglev, inductive energy transfer system has the highest efficiency and the nearest transfer distance. In this paper, the development history and principal applications of these three techniques are given and compared. Some of their potential applications and hotspots are proposed in detail. And existed problems in them are discussed. Some research results are also given.