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Toward the Design of Control Algorithms for a Photovoltaic Equalizer: Choosing the Optimal Switching Strategy and the Duty Cycle

机译:面向光伏均衡器的控制算法设计:选择最佳开关策略和占空比

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摘要

The photovoltaic equalizer is a promising response to the problems of partial shading in photovoltaic modules. Equipped with a network of transistors, this system can connect itself to the unshaded cells of the photovoltaic module, gather their excess current, and share it with the shaded cells. Thus, for a given shadow, the equalizer must always choose the transistors to activate and their associated duty cycle. This paper studies the impacts of these choices over power production in two parts. First, a quasi-exhaustive simulation is used to find the best transistors to activate for maximizing power production under a given shadow. Second, changes in the duty cycle are applied and its effects evaluated by analyzing the I-V curve of the associated PV module. All simulations are validated through measurements. The conclusions are summarized into “behavior laws” which can be used to develop algorithms for the equalizer control system.
机译:光伏均衡器是对光伏模块中部分阴影问题的有希望的回应。配备了晶体管网络,该系统可以将自身连接到光伏模块的未阴影电池,收集其多余电流,并与阴影电池共享。因此,对于给定的阴影,均衡器必须始终选择要激活的晶体管及其相关的占空比。本文分两部分研究了这些选择对电力生产的影响。首先,使用拟穷举模拟来找到最佳的晶体管来激活,以在给定的阴影下最大化功率的产生。其次,通过分析相关PV模块的I-V曲线来应用占空比的变化并评估其影响。所有模拟都通过测量得到验证。结论总结为“行为定律”,可用于开发均衡器控制系统的算法。

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