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Highly-Reliable Flyback-Based PV Micro-Inverter Applying Power Decoupling Capability without Additional Components

机译:高度可靠的基于反激的光伏微型逆变器,无需其他组件即可实现电源去耦功能

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摘要

This paper discusses a verification of an electrolytic capacitor-less PV micro-inverter aiming for high reliability and volume reduction. The inverters, which are connected to a single-phase AC grid, have a double-line-frequency power ripple. Thus, a bulky electrolytic capacitor is generally used in DC side. The proposed converter consists of the fly-back converter, the voltage source inverter (VSI), and small capacitor in the DC link part in order to achieve the power decoupling without the any additional component. In addition, the sensor less magnetizing current control is proposed in order to ensure the compatibility between the surge voltage and cost reduction. Furthermore, it is demonstrated that the discontinuous current mode (DCM) of the proposed fly-back converter has the great power decoupling effect in comparison with the continuous current mode (CCM). From the experimental result, the second-order harmonics in the DCM operation is reduced by 97% in comparison with that in the CCM operation.
机译:本文讨论了一种无电解电容器的光伏微型逆变器的验证,该逆变器旨在实现高可靠性和减小体积。连接到单相交流电网的逆变器具有双线频率的电源纹波。因此,通常在直流侧使用大容量的电解电容器。提出的转换器由反激转换器,电压源逆变器(VSI)和直流母线部分中的小电容器组成,以实现功率去耦,而无需任何其他组件。另外,为了确保电涌电压和成本降低之间的兼容性,提出了无传感器励磁电流控制。此外,证明了所提出的反激式转换器的不连续电流模式(DCM)与连续电流模式(CCM)相比具有很大的功率去耦效果。从实验结果来看,与CCM操作相比,DCM操作中的二次谐波降低了97%。

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