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Hybrid Discontinuous/Boundary Conduction Mode of Flyback Microinverter for AC–PV Modules

机译:AC–PV模块反激式微逆变器的混合间断/边界传导模式

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The current-source flyback inverter has been proven an excellent solution for ac–PV modules. The two principal modes of operation of this converter are the discontinuous conduction mode (DCM) and the boundary conduction mode (BCM). Although BCM offers higher power density, it suffers at lower power levels, because of the significantly increased switching frequency that consequently leads to higher switching losses and lower overall converter efficiency. In this paper, a hybrid operating mode is presented, that combines both DCM and BCM during a utility grid period, so as to improve the converter performance as well as the efficiency and the power density on a wider power range. The mathematical analysis that describes the control specifics especially for a smooth transition between the two modes of operation is presented and demonstrated through computer simulations and experimental results on a laboratory prototype.
机译:事实证明,电流源反激式逆变器是用于ac-PV模块的出色解决方案。该转换器的两种主要工作模式是不连续传导模式(DCM)和边界传导模式(BCM)。尽管BCM提供更高的功率密度,但由于开关频率显着提高,因此其功率水平较低,从而导致更高的开关损耗和更低的整体转换器效率。在本文中,提出了一种混合工作模式,该模式在公用电网期间将DCM和BCM结合在一起,以提高转换器性能以及在更宽的功率范围内的效率和功率密度。通过计算机模拟和实验室原型上的实验结果,展示并演示了描述控制细节的数学分析,尤其是两种操作模式之间的平稳过渡。

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