电工电气
電工電氣
전공전기
ELECTROTECHNICS ELECTRIC
2013年
4期
24-27
,共4页
可分离变压器%非接触电能传输%原副边补偿
可分離變壓器%非接觸電能傳輸%原副邊補償
가분리변압기%비접촉전능전수%원부변보상
detachable transformer%contactless power transmission%primary and secondary compensation
基于电磁感应原理,运用现代电力电子能量变换技术和控制方法,实现供电线路和用电设备之间的非接触电能传输.通过对初级变换器拓扑选择及主要元器件参数的分析,提出非接触电能传输系统的设计,并对系统的效率和补偿等关键问题进行了仿真及实验研究,提高了系统的传输效率.
基于電磁感應原理,運用現代電力電子能量變換技術和控製方法,實現供電線路和用電設備之間的非接觸電能傳輸.通過對初級變換器拓撲選擇及主要元器件參數的分析,提齣非接觸電能傳輸繫統的設計,併對繫統的效率和補償等關鍵問題進行瞭倣真及實驗研究,提高瞭繫統的傳輸效率.
기우전자감응원리,운용현대전력전자능량변환기술화공제방법,실현공전선로화용전설비지간적비접촉전능전수.통과대초급변환기탁복선택급주요원기건삼수적분석,제출비접촉전능전수계통적설계,병대계통적효솔화보상등관건문제진행료방진급실험연구,제고료계통적전수효솔.
On the basis of the principle of electromagnetic induction, the energy converting technology of modern power electron-ics and controlling methods were adopted to realize contactless power transmission between power lines and electrical equipments. A design of contactless power transmission system was set up by selecting the topology of primary converter and analyzing parameters of main components. Simulation and experimental study of key points on the efficiency and compensation of the system were completed, which improved transmission efficiency of the system.