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首页> 外文期刊>Power Electronics, IEEE Transactions on >Weighted Efficiency Optimization of Flyback Microinverter Under Improved Boundary Conduction Mode (i-BCM)
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Weighted Efficiency Optimization of Flyback Microinverter Under Improved Boundary Conduction Mode (i-BCM)

机译:改进的边界传导模式(i-BCM)下反激式微逆变器的加权效率优化

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摘要

The flyback topology is proven to be a very strong candidate solution for use in ac-PV module applications. Operation in the boundary condition mode (BCM) provides high power density, while maintaining the characteristics of a current source inverter. In this paper, a design methodology is presented, that maximizes the weighted efficiency of the converter through an optimization algorithm. The inverter operation is investigated and the behavior under the improved BCM is documented by analytical equations followed by the power loss calculations for each component. This enables to accurately define the relation between the design parameters and the efficiency of the implemented converter and so, an optimization algorithm is established, that takes into consideration the design specifications and constraints. The proposed methodology is also verified with an experimental prototype.
机译:事实证明,反激式拓扑是用于ac-PV模块应用的非常强大的候选解决方案。边界条件模式(BCM)下的操作可提供高功率密度,同时保持电流源逆变器的特性。在本文中,提出了一种设计方法,该方法可通过优化算法最大化转换器的加权效率。研究了逆变器的运行情况,并通过解析方程式记录了改进的BCM行为,然后计算了每个组件的功率损耗。这使得能够准确定义设计参数与所实现的转换器的效率之间的关系,因此,建立了一种优化算法,其中考虑了设计规范和约束。所提出的方法还通过实验原型进行了验证。

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