Simplified Power Estimation Feedforward to Reduce DC-Link Capacitance in Single-Phase Dual-Stage Full-Bridge Microinverter

P. Vongkoon, P. Liutanakul
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Abstract

To enhance the reliability and lifetime of a single-phase dual-stage full-bridge microinverter, the film capacitor may be preferably used instead of a DC-link electrolytic capacitor. However, concern to hold the DC-link voltage during transients, this expectation needs an input current sensor for conventional feedforward power balance compensation in the voltage control loop, increasing whole system cost. Moreover, the inherent double-line frequency of single-phase AC instantaneous power still appears on the DC-link voltage that is the adverse cause of grid-injected third-order harmonic current of the inverter. For overcoming all the obstacles described above, without any use of an input current sensor, this paper proposes a modified notch filter to function with an input DC power estimation feedforward for the voltage control loop. Consequently, using the film capacitor can be used without any system performance reduction, which can reduce system cost. The simulation results show that the proposed power estimation feedforward can cope with a dip of DC-link voltage, while the good quality of grid-injected current is not significantly different from using the conventional feedforward.
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简化功率预估前馈减小单相双级全桥微逆变器直流电容
为了提高单相双级全桥微型逆变器的可靠性和使用寿命,可以优选使用薄膜电容代替直流链路电解电容。然而,考虑到在瞬态期间保持直流链路电压,这一期望需要在电压控制回路中使用输入电流传感器进行传统的前馈功率平衡补偿,从而增加了整个系统的成本。此外,单相交流瞬时功率固有的双线频率仍然出现在直流电压上,这是逆变器并网注入三次谐波电流的不利原因。为了克服上述所有障碍,在不使用任何输入电流传感器的情况下,本文提出了一种改进的陷波滤波器,用于电压控制环的输入直流功率估计前馈。因此,使用薄膜电容器可以在不降低系统性能的情况下使用,从而可以降低系统成本。仿真结果表明,所提出的功率估计前馈能够应对直流电压的下降,同时电网注入电流的良好质量与传统前馈没有明显差异。
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