简介:""""Sensorless""""Controlof4-Quadrant-RectifiersforVoltageSourceInverters(VSI);1kV4H-SiCJBSRectifiersFabricatedUsinganAIMCappedAnneal;1MHzSelf-DrivenZVSFull-BridgeConverterfor48VPowerPods;3-levelthreephasesoft-switchingPWMrectifierwithsingleauxiliaryresonantcommutatedsnubbercircuit;3-phaseconvertermodelingforunbalancedradialsystems;A100kWHigh-PerformancePWMRectifierWithaZCTSoft-SwitchingTechnique;
简介:A8192ComplexPointFFT/IFFTforCOFDMModulationSchemeinDVB-TSystem,Acomparisonofvariousbuck-boost,convertersandtheirapplicationtoPFC,AControlMethodind-qSynchronousFrameforPWMBoostRectifierunderGeneralizedUnbalancedOperatingConditions,ADCmodelfortransientanalysisofaseriesactivefilterintegratedwithadouble-seriesdioderectifier
简介:AFullyDigitalRapidChargerforElectricScooters,Afuzzy-controlledsingle-phaseactivepowerfilteroperatingwithfixedswitchingfrequencyforreactivepowerandcurrentharmonicscompensation,Afuzzy-logic-basedcontrollerforactiverectifier,AHighPerformanceCMOSCurrent-ModePrecisionFull-WaveRectifier(PFWR),Ahighpoweractivefilterforharmoniccompensationinanelectriclocomotive,Ahigh-power-factor,three-phaseisolatedAC-DCconverterusinghigh-frequencycurrentinjection,AHybridCompensationSystemwithAnActiveFilterandDistributedPassiveFiltersinPowerSystemswithDispersedGeneration。
简介:12脉冲整流技术的发展由来已久,早在上世纪70年代初期,当大功率可控硅技术发展成熟之际,人们就已经发现了可控硅整流器在将交流电转换为直流电的同时,产生了大量的谐波电流注入到电网中,随之而来的就是谐波电流对电网中的其他负载产生影响,为此,人们寻求一种解决方法,希望去除掉整流器产生的谐波电流。在当时的技术水平和条件下,只有两种解决方案:其一是采用两套整流器通过不同相位的叠加,以便消除H5、H7次谐波,这就是12脉冲整流器;另外一种方案就是采用LC型的无源滤波器,试图消除(主要是)H5和(部分的)H7以及少量的其他可高次的谐波,这在当时算是比较先进的技术.