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Optimal variable switching frequency scheme for grid connected full bridge inverters with bipolar modulation scheme

机译:具有双极性调制方案的并网全桥逆变器的最佳可变开关频率方案

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This paper proposes a scheme to improve the system overall efficiency while still meeting a given THD requirement by implementing variable instantaneous switching frequency scheme in a full bridge inverter. Previous work has analyzed variable frequency scheme for unipolar PWM. This paper aims at minimizing the switching loss for inverters using bipolar PWM scheme by including characteristics of the loss and current ripple relative to instantaneous switching frequency in the optimization process. Compared with unipolar modulation, bipolar modulation is much more suitable to implement the variable switching frequency scheme due to its ripple distribution pattern. An additional motivation is that the common mode leakage current performance of bipolar PWM is superior to that of the unipolar PWM for grid connected converters. A 1 kW full bridge inverter using SiC MOSFETs and ferrite core has been built to validate the theoretical analysis. Both constant switching frequency scheme (200 kHz) and optimal variable frequency scheme with simple code modification have been implemented in the experimental prototype using DSP TMS320f28335. The optimal variable switching frequency scheme can increase the inverter efficiency at rated power (1 kW) from 95.5% to 96.8% and has a correspondingly significant 38.1% saving on the switching loss compared with constant switching frequency scheme.
机译:本文提出了一种方案,该方案通过在全桥逆变器中实施可变瞬时开关频率方案来在仍然满足给定的THD要求的同时提高系统整体效率。先前的工作已经分析了单极性PWM的变频方案。本文旨在通过在优化过程中包括损耗和电流纹波相对于瞬时开关频率的特性,来使使用双极PWM方案的逆变器的开关损耗最小。与单极性调制相比,双极性调制由于其纹波分布模式而更适合于实现可变开关频率方案。另一个动机是,双极性PWM的共模泄漏电流性能优于并网转换器的单极性PWM。已经建立了一个使用SiC MOSFET和铁氧体磁芯的1 kW全桥逆变器,以验证理论分析。使用DSP TMS320f28335的实验原型已经实现了恒定开关频率方案(200 kHz)和具有简单代码修改功能的最佳可变频率方案。最佳的可变开关频率方案可以将额定功率(1 kW)时的逆变器效率从95.5 \%提高到96.8 \%,并且与恒定开关频率方案相比,可以节省38.1 \%的开关损耗。

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