电力系统自动化
電力繫統自動化
전력계통자동화
AUTOMATION OF ELECTRIC POWER SYSTEMS
2014年
3期
47-51,58
,共6页
松耦合感应电能传输系统%全桥谐振变换器%耦合系数%非线性行为
鬆耦閤感應電能傳輸繫統%全橋諧振變換器%耦閤繫數%非線性行為
송우합감응전능전수계통%전교해진변환기%우합계수%비선성행위
loosely coupled inductive power transfer system%full-bridge resonant converter%coupling coefficient%nonlinear behaviors
松散耦合感应电能传输系统利用电磁感应技术,实现了能量的非接触传输,解决了传统导线直接供电的缺陷,是一种有效、安全的电能传输方法。文中以全桥谐振变换器为例,基于松散耦合变压器分析了系统随着耦合系数的改变而发生的非线性分岔现象。通过互感模型建立系统的状态方程及其非线性模型,分析了系统谐振时的非线性行为,得到以耦合系数为分岔参数的系统复杂三维分岔图。电路仿真验证了系统的复杂分岔行为,并且进一步分析了系统在分岔过程中经历的边界碰撞现象以及准周期状态下系统的时域与频域特征。该研究将开关变换器的非线性研究拓展到无线电能传输系统中,对无线电能传输系统的可靠设计具有重要指导意义。
鬆散耦閤感應電能傳輸繫統利用電磁感應技術,實現瞭能量的非接觸傳輸,解決瞭傳統導線直接供電的缺陷,是一種有效、安全的電能傳輸方法。文中以全橋諧振變換器為例,基于鬆散耦閤變壓器分析瞭繫統隨著耦閤繫數的改變而髮生的非線性分岔現象。通過互感模型建立繫統的狀態方程及其非線性模型,分析瞭繫統諧振時的非線性行為,得到以耦閤繫數為分岔參數的繫統複雜三維分岔圖。電路倣真驗證瞭繫統的複雜分岔行為,併且進一步分析瞭繫統在分岔過程中經歷的邊界踫撞現象以及準週期狀態下繫統的時域與頻域特徵。該研究將開關變換器的非線性研究拓展到無線電能傳輸繫統中,對無線電能傳輸繫統的可靠設計具有重要指導意義。
송산우합감응전능전수계통이용전자감응기술,실현료능량적비접촉전수,해결료전통도선직접공전적결함,시일충유효、안전적전능전수방법。문중이전교해진변환기위례,기우송산우합변압기분석료계통수착우합계수적개변이발생적비선성분차현상。통과호감모형건립계통적상태방정급기비선성모형,분석료계통해진시적비선성행위,득도이우합계수위분차삼수적계통복잡삼유분차도。전로방진험증료계통적복잡분차행위,병차진일보분석료계통재분차과정중경력적변계팽당현상이급준주기상태하계통적시역여빈역특정。해연구장개관변환기적비선성연구탁전도무선전능전수계통중,대무선전능전수계통적가고설계구유중요지도의의。
The loosely coupled inductive power transfer system is an effective and safe method of power transmission,which uses electromagnetic induction technology to achieve non-contact transmission of energy while solving the shortcoming of traditional power supply with wires.The nonlinear bifurcation phenomenon of the full-bridge resonant converter is analyzed with the change of the coupling coefficient of the loosely coupled transformer.The state equations and nonlinear models of the system are built based on the mutual inductance modeling.The nonlinear behaviors are numerically analyzed when the system resonates,and the complex three-dimensional bifurcation diagram is obtained with the coupling coefficient as the bifurcation parameter.The complex bifurcation behaviors of the system are validated by circuit simulation.Moreover,the border collision phenomenon and the characteristics of the time and frequency domains are analyzed.This study expands nonlinear research on the switching converter to the wireless power transfer system,providing important guidance for reliability design of the wireless power transfer system.