IET電力電子將五個(gè)主要的電力電子主題結(jié)合在一起。強(qiáng)烈鼓勵(lì)提交側(cè)重于其中一個(gè)或多個(gè)主題的高質(zhì)量研究。電力半導(dǎo)體技術(shù)在電力控制和轉(zhuǎn)換中的應(yīng)用:電機(jī)驅(qū)動(dòng);各種形式的運(yùn)輸;制造;加熱;照明;建筑服務(wù)和工業(yè)規(guī)模的電力調(diào)節(jié)。常用電路包括:各種類型的轉(zhuǎn)換器;逆變器;有源濾波器;開關(guān)電源和不間斷電源。電力電子應(yīng)用中使用的裝置,包括:電力半導(dǎo)體裝置;光伏裝置;無(wú)源元件;繞線元件;電池和保險(xiǎn)絲。電力電子電路和完整電力電子系統(tǒng)的控制、分析、建模和/或模擬技術(shù)。電力電子系統(tǒng)的性能管理,包括:功率因數(shù)校正和諧波頻譜管理;熱管理;電磁兼容和噪聲抑制;熔合和保護(hù)。
IET Power Electronics brings together five principal power electronics themes. The submission of high quality research that focuses on one or more of these themes is strongly encouraged. Applications of power semiconductor technology for the control and conversion of electric power in: electric machine drives; all forms of transport; manufacturing; heating; lighting; building services and industrial scale power conditioning. Circuits commonly used including: all types of converters; inverters; active filters; switched mode power and uninterruptible power supplies. Devices used in power electronic applications including: power semiconductor devices; photovoltaic devices; passive components; wound components; batteries and fuses. Techniques for controlling, analysing, modelling and/or simulation of power electronics circuits and complete power electronic systems. Performance management of power electronic systems including: power factor correction and harmonic spectrum management; thermal management; EMC and noise mitigation; fusing and protection.
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