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A resonance suppression method for GaN-based single-phase quasi-Z-source PV inverter with high switching frequency

机译:高开关频率GaN基单相准Z源光伏逆变器的谐振抑制方法

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By utilizing next-gen wide band-gap (WBG) devices, such as GaN and SiC, at high switching frequency in a single-phase Quasi-Z-Source PV inverter (qZSI), the impedance network can be significantly reduced. Although, the reduced qZS impedance network will decrease cost and improved power density, it will also result in frequency resonance that will introduce oscillations in the capacitor voltage and increase system losses. Thus, these resonances must be properly mitigated. Traditional methods only apply to two-stage power conditioning systems and/or require a low voltage control bandwidth, which is unsuitable for the GaN-based qZSI. Therefore, this paper proposes an active damping control method to suppress the high frequency resonance that results from the reduced impedance network in a single phase qZSI. A 1-kW prototype is built and experimental results verify the effectiveness of the proposed control method.
机译:通过在单相准Z源PV逆变器(qZSI)中以高开关频率利用诸如GaN和SiC的下一代宽带隙(WBG)器件,可以显着降低阻抗网络。尽管减小的qZS阻抗网络将降低成本并提高功率密度,但也会导致频率谐振,这将在电容器电压中引入振荡并增加系统损耗。因此,必须适当地减轻这些共振。传统方法仅适用于两级功率调节系统和/或需要低电压控制带宽,这不适用于基于GaN的qZSI。因此,本文提出了一种主动阻尼控制方法,以抑制单相qZSI中由阻抗降低的网络引起的高频谐振。建立了一个1kW的原型,实验结果验证了所提出控制方法的有效性。

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