单相无变压器全桥光伏逆变器死区谐波分析

Yongheng Yang, Keliang Zhou, F. Blaabjerg
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引用次数: 7

摘要

电压源逆变器的短时间,称为死区时间,通常被实现(例如,通过在栅极驱动器中添加额外的硬件或修改脉宽调制方案),以防止击穿事件。显然,更长的死区时间提供了更多的安全性,但也可能降低从逆变器注入的电流。因此,它需要复杂的补偿方案来满足某些严格的标准。对于单相无变压器全桥光伏逆变器,可以采用不同的调制方案来抑制漏电流,而漏电流又会影响死区谐波的分布。因此,这推动了考虑两种调制策略的单相无变压器全桥逆变器的死区谐波分析:双极和单极调制方案。通过仿真和实验测试,观察了调制对死区谐波的影响。此外,采用周期控制器对谐波进行抑制,使其与调制方式无关。
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Analysis of dead-time harmonics in single-phase transformerless full-bridge PV inverters
A short period, called dead time, is usually implemented (e.g., through adding extra hardware in gate drivers or modifying pulse-width modulation schemes) for voltage source inverters to prevent shoot-through incidents. Clearly, larger dead time provides more safety, but may also degrade the injected currents from inverters. It thus requires sophisticated compensation schemes to meet certain stringent standards. For single-phase transformerless full-bridge PV inverters, different modulation schemes can be employed to suppress leakage currents, which in return may affect the distribution of the dead time harmonics. Thus, this drives the analysis of dead time harmonics in single-phase transformerless full-bridge inverters considering two modulation strategies: bipolar and unipolar modulation schemes. Effects of modulation on the dead time harmonics are observed in simulations and experimental tests. Furthermore, a periodic controller is adopted to mitigate the harmonics, which is independent of the modulation schemes.
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