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Dual Three-Pulse Modulation-Based High-Frequency Pulsating DC Link Two-Stage Three-Phase Inverter for Electric/Hybrid/Fuel Cell Vehicles Applications

机译:基于双脉冲调制的高频脉动直流母线两相三相逆变器,用于电动/混合动力/燃料电池汽车

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This paper proposes a new modulation technique dual three-pulse modulation (DTPM) to switch dual full-bridge output capacitorless dc/dc converters to develop a pulsating dc link voltage encoding six pulse rectified output information. The pulsating voltage is directly fed to a standard six-pack inverter to develop three-phase ac output voltage. Proposed inverter and modulation are suitable for electric, hybrid electric, and fuel cell vehicles. The absence of the dc link capacitor and DTPM produce pulsating dc voltage that retains the sine-wave information (six- or three-phase rectified output) at the input of three-phase inverter. Inverter devices are modulated for 33% (one-third) of the line cycle and remains in their unique switching state (either on for 33% or off for 33%) and results in average device switching frequency of one-third of switching frequency. This results in 66% savings in switching losses. In addition, devices are not switched when the current through them is at its peak value and total savings in switching loss accounts to be up to 86.7% in comparison with a standard voltage source inverter with sine pulsewidth modulation. This paper presents operation and analysis of the pulsating dc link two-stage inverter controlled by the proposed DTPM at the front end and 33% modulation for the six-pack inverter along with the implementation. Design of the two-stage three-phase inverter has been illustrated. Analysis has been verified through simulation results using PSIM 9.0.4. Experimental results on a lab prototype have been demonstrated to validate the claims and the proposal.
机译:本文提出了一种新的调制技术双三脉冲调制(DTPM),以切换双全桥输出无电容器dc / dc转换器,从而开发出编码六个脉冲整流输出信息的脉动dc链路电压。脉动电压直接馈入标准的六组逆变器,以产生三相交流输出电压。提议的逆变器和调制方式适用于电动,混合动力和燃料电池汽车。缺少直流链路电容器和DTPM会产生脉动直流电压,该电压会在三相逆变器的输入端保留正弦波信息(六相或三相整流输出)。逆变器器件的调制周期为线路周期的33%(三分之一),并保持其独特的开关状态(导通状态为33%或关断状态为33%),平均设备开关频率为开关频率的三分之一。这样可以节省66%的开关损耗。此外,与通过正弦脉冲宽度调制的标准电压源逆变器相比,当通过它们的电流达到峰值时,设备不会被开关,并且开关损耗的总节省高达86.7%。本文介绍了由建议的DTPM在前端控制的脉动直流环节两级逆变器的运行和分析,以及六组逆变器的33%调制及其实现方法。已经说明了两级三相逆变器的设计。使用PSIM 9.0.4通过仿真结果已经验证了分析。已经证明了在实验室原型上的实验结果可以验证权利要求和提议。

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