Modelling of bidirectional full bridge DC-DC converter as one of the most applicable converters has received significant attention. Mathematical modelling reduces the simulation time in comparison with detailed circui...Modelling of bidirectional full bridge DC-DC converter as one of the most applicable converters has received significant attention. Mathematical modelling reduces the simulation time in comparison with detailed circuit response;moreover it is convenient for controller design purpose. Due to simple and effective methodology, average state space is the most common method among the modelling methods. In this paper a bidirectional full bridge converter is modelled by average state space and for each mode of operations a controller is designed. Attained mathematical model results are in a close agreement with detailed circuit simulation.展开更多
A new precision full-wave rectifier employing only two differential difference current conveyors, which is very suitable for CMOS technology implementation, is presented. The proposed rectifier is the voltage-mode cir...A new precision full-wave rectifier employing only two differential difference current conveyors, which is very suitable for CMOS technology implementation, is presented. The proposed rectifier is the voltage-mode circuit, which offers high-input and low-output impedance hence it can be directly connected to load without using any buffer circuits. PSPICE is used to verify the circuit performance. Simulated rectifier results based-on a 0.5 μm CMOS technology with ±2.5 V supply voltage demonstrates high precision rectification and excellent temperature stability. In addition, the application of proposed rectifier to pseudo RMS-to-DC conversion is also introduced.展开更多
储能电感位于原边的全桥DC/DC变流器(full bridgeconverter with primary side energy storage inductor,FB-PESI),采用传统的固定频率、移向控制(phase-shift,PS)方式时主要工作于断续导通模式(discontinuous conductionmode,DCM...储能电感位于原边的全桥DC/DC变流器(full bridgeconverter with primary side energy storage inductor,FB-PESI),采用传统的固定频率、移向控制(phase-shift,PS)方式时主要工作于断续导通模式(discontinuous conductionmode,DCM),不适合应用于宽范围电压输入的场合。为克服PSFB-PESI变流器的这一缺点,提出一种新型的采用变频(variable frequency,VF)控制策略的FB-PESI DC/DC变流器(VFFB-PESI)。该VFFB-PESI变流器不仅保留了PSFB-PESI变流器宽范围软开关、高效率、高功率密度的优点,还可始终工作于临界导通模式(critical continuous operation mode,CrCM),从而在宽输入电压范围内均可获得较高的变换效率。同时给出了针对该VFFB-PESI变流器的损耗分析方法和优化设计流程。通过制作的300 W、200~400 V输入、12 V输出样机实验,验证了理论分析的正确性。展开更多
文摘Modelling of bidirectional full bridge DC-DC converter as one of the most applicable converters has received significant attention. Mathematical modelling reduces the simulation time in comparison with detailed circuit response;moreover it is convenient for controller design purpose. Due to simple and effective methodology, average state space is the most common method among the modelling methods. In this paper a bidirectional full bridge converter is modelled by average state space and for each mode of operations a controller is designed. Attained mathematical model results are in a close agreement with detailed circuit simulation.
文摘A new precision full-wave rectifier employing only two differential difference current conveyors, which is very suitable for CMOS technology implementation, is presented. The proposed rectifier is the voltage-mode circuit, which offers high-input and low-output impedance hence it can be directly connected to load without using any buffer circuits. PSPICE is used to verify the circuit performance. Simulated rectifier results based-on a 0.5 μm CMOS technology with ±2.5 V supply voltage demonstrates high precision rectification and excellent temperature stability. In addition, the application of proposed rectifier to pseudo RMS-to-DC conversion is also introduced.