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Volt-second-based control method for discontinuous conduction mode flyback micro-inverters to improve total harmonic distortion

机译:基于伏秒的不连续导通模式反激微逆变器控制方法,以改善总谐波失真

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摘要

Flyback-type micro-inverter is an attractive solution for photovoltaic ac-module applications because of several advantages; such as simple current control, working without ac current sensor and potentially low cost. However, it suffers from the dc-link voltage ripple that causes it to merge with the third and fifth harmonics on the output current. For this reason, a very smooth dc-link voltage is essential in order to keep total harmonic distortion (THD) at a low level. However, the voltage ripple is inevitable in practise for single-phase inverters because of pulsating instantaneous power. This study presents a new volt-second-based current control method for flyback micro-inverters which improves THD caused by the voltage ripple. The proposed method works effectively up to approximately 20% of the dc-link voltage ripple. In addition, the volt-second-based control method is able to allow reduction of the power decoupling capacitor value. Experimental results validating the proposed method are also presented.
机译:反激式微型逆变器具有许多优势,是光伏交流模块应用中有吸引力的解决方案。例如简单的电流控制,无需交流电流传感器即可工作以及潜在的低成本。但是,它会遭受直流母线电压纹波的影响,导致其与输出电流的三次谐波和第五次谐波合并。因此,为了使总谐波失真(THD)保持在较低水平,非常平滑的直流母线电压至关重要。然而,由于脉动瞬时功率,在单相逆变器中实际上不可避免地存在电压纹波。这项研究提出了一种新的基于伏秒的电流控制方法,用于反激式微逆变器,该方法可改善由电压纹波引起的THD。所提出的方法可以有效地工作到大约直流链路电压纹波的20%。另外,基于伏秒的控制方法能够减小功率去耦电容器的值。实验结果验证了该方法的有效性。

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    《Power Electronics, IET》 |2013年第8期|1600-1607|共8页
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